Skip to main content
Top
Published in: Heart Failure Reviews 4/2015

Open Access 01-07-2015

BAG3: a new player in the heart failure paradigm

Authors: Tijana Knezevic, Valerie D. Myers, Jennifer Gordon, Douglas G. Tilley, Thomas E. Sharp III, JuFang Wang, Kamel Khalili, Joseph Y. Cheung, Arthur M. Feldman

Published in: Heart Failure Reviews | Issue 4/2015

Login to get access

Abstract

BAG3 is a cellular protein that is expressed predominantly in skeletal and cardiac muscle but can also be found in the brain and in the peripheral nervous system. BAG3 functions in the cell include: serving as a co-chaperone with members of the heat-shock protein family of proteins to facilitate the removal of misfolded and degraded proteins, inhibiting apoptosis by interacting with Bcl2 and maintaining the structural integrity of the Z-disk in muscle by binding with CapZ. The importance of BAG3 in the homeostasis of myocytes and its role in the development of heart failure was evidenced by the finding that single allelic mutations in BAG3 were associated with familial dilated cardiomyopathy. Furthermore, significant decreases in the level of BAG3 have been found in end-stage failing human heart and in animal models of heart failure including mice with heart failure secondary to trans-aortic banding and in pigs after myocardial infarction. Thus, it becomes relevant to understand the cellular biology and molecular regulation of BAG3 expression in order to design new therapies for the treatment of patients with both hereditary and non-hereditary forms of dilated cardiomyopathy.
Literature
1.
go back to reference Rosati A, Graziano V, De Laurenzi V, Pascale M, Turco MC (2011) Bag3: a multifaceted protein that regulates major cell pathways. Cell Death Dis 2:e141PubMedCentralPubMed Rosati A, Graziano V, De Laurenzi V, Pascale M, Turco MC (2011) Bag3: a multifaceted protein that regulates major cell pathways. Cell Death Dis 2:e141PubMedCentralPubMed
2.
go back to reference McCollum AK, Casagrande G, Kohn EC (2010) Caught in the middle: the role of bag3 in disease. Biochem J 425:e1–e3 McCollum AK, Casagrande G, Kohn EC (2010) Caught in the middle: the role of bag3 in disease. Biochem J 425:e1–e3
3.
go back to reference Maloyan A, Sayegh J, Osinska H, Chua BH, Robbins J (2010) Manipulation of death pathways in desmin-related cardiomyopathy. Circ Res 106:1524–1532PubMedCentralPubMed Maloyan A, Sayegh J, Osinska H, Chua BH, Robbins J (2010) Manipulation of death pathways in desmin-related cardiomyopathy. Circ Res 106:1524–1532PubMedCentralPubMed
4.
go back to reference Li X, Colvin T, Rauch JN, Acosta-Alvear D, Kampmann M, Dunyak B, Hann B, Aftab BT, Murnane M, Cho M, Walter P, Weissman JS, Sherman MY, Gestwicki JE (2015) Validation of the hsp70-bag3 protein-protein interaction as a potential therapeutic target in cancer. Mol Cancer Ther. doi:10.1158/1535-7163.MCT-14-0650 Li X, Colvin T, Rauch JN, Acosta-Alvear D, Kampmann M, Dunyak B, Hann B, Aftab BT, Murnane M, Cho M, Walter P, Weissman JS, Sherman MY, Gestwicki JE (2015) Validation of the hsp70-bag3 protein-protein interaction as a potential therapeutic target in cancer. Mol Cancer Ther. doi:10.​1158/​1535-7163.​MCT-14-0650
7.
go back to reference Homma S, Iwasaki M, Shelton GD, Engvall E, Reed JC, Takayama S (2006) Bag3 deficiency results in fulminant myopathy and early lethality. Am J Pathol 169:761–773PubMedCentralPubMed Homma S, Iwasaki M, Shelton GD, Engvall E, Reed JC, Takayama S (2006) Bag3 deficiency results in fulminant myopathy and early lethality. Am J Pathol 169:761–773PubMedCentralPubMed
8.
go back to reference Selcen D, Muntoni F, Burton BK, Pegoraro E, Sewry C, Bite AV, Engel AG (2009) Mutation in bag3 causes severe dominant childhood muscular dystrophy. Ann Neurol 65:83–89PubMedCentralPubMed Selcen D, Muntoni F, Burton BK, Pegoraro E, Sewry C, Bite AV, Engel AG (2009) Mutation in bag3 causes severe dominant childhood muscular dystrophy. Ann Neurol 65:83–89PubMedCentralPubMed
9.
go back to reference Norton N, Li D, Rieder MJ, Siegfried JD, Rampersaud E, Zuchner S, Mangos S, Gonzalez-Quintana J, Wang L, McGee S, Reiser J, Martin E, Nickerson DA, Hershberger RE (2011) Genome-wide studies of copy number variation and exome sequencing identify rare variants in bag3 as a cause of dilated cardiomyopathy. Am J Hum Genet 88:273–282PubMedCentralPubMed Norton N, Li D, Rieder MJ, Siegfried JD, Rampersaud E, Zuchner S, Mangos S, Gonzalez-Quintana J, Wang L, McGee S, Reiser J, Martin E, Nickerson DA, Hershberger RE (2011) Genome-wide studies of copy number variation and exome sequencing identify rare variants in bag3 as a cause of dilated cardiomyopathy. Am J Hum Genet 88:273–282PubMedCentralPubMed
10.
go back to reference Hishiya A, Kitazawa T, Takayama S (2010) Bag3 and hsc70 interact with actin capping protein capz to maintain myofibrillar integrity under mechanical stress. Circ Res 107:1220–1231PubMedCentralPubMed Hishiya A, Kitazawa T, Takayama S (2010) Bag3 and hsc70 interact with actin capping protein capz to maintain myofibrillar integrity under mechanical stress. Circ Res 107:1220–1231PubMedCentralPubMed
11.
go back to reference Odgerel Z, Sarkozy A, Lee HS, McKenna C, Rankin J, Straub V, Lochmuller H, Paola F, D’Amico A, Bertini E, Bushby K, Goldfarb LG (2010) Inheritance patterns and phenotypic features of myofibrillar myopathy associated with a bag3 mutation. Neuromuscul Disord 20:438–442PubMedCentralPubMed Odgerel Z, Sarkozy A, Lee HS, McKenna C, Rankin J, Straub V, Lochmuller H, Paola F, D’Amico A, Bertini E, Bushby K, Goldfarb LG (2010) Inheritance patterns and phenotypic features of myofibrillar myopathy associated with a bag3 mutation. Neuromuscul Disord 20:438–442PubMedCentralPubMed
13.
go back to reference Ellinor PT, Sasse-Klaassen S, Probst S, Gerull B, Shin JT, Toeppel A, Heuser A, Michely B, Yoerger DM, Song BS, Pilz B, Krings G, Coplin B, Lange PE, Dec GW, Hennies HC, Thierfelder L, MacRae CA (2006) A novel locus for dilated cardiomyopathy, diffuse myocardial fibrosis, and sudden death on chromosome 10q25-26. J Am Coll Cardiol 48:106–111PubMed Ellinor PT, Sasse-Klaassen S, Probst S, Gerull B, Shin JT, Toeppel A, Heuser A, Michely B, Yoerger DM, Song BS, Pilz B, Krings G, Coplin B, Lange PE, Dec GW, Hennies HC, Thierfelder L, MacRae CA (2006) A novel locus for dilated cardiomyopathy, diffuse myocardial fibrosis, and sudden death on chromosome 10q25-26. J Am Coll Cardiol 48:106–111PubMed
14.
go back to reference Arimura T, Ishikawa T, Nunoda S, Kawai S, Kimura A (2011) Dilated cardiomyopathy-associated bag3 mutations impair z-disc assembly and enhance sensitivity to apoptosis in cardiomyocytes. Hum Mutat 32:1481–1491PubMed Arimura T, Ishikawa T, Nunoda S, Kawai S, Kimura A (2011) Dilated cardiomyopathy-associated bag3 mutations impair z-disc assembly and enhance sensitivity to apoptosis in cardiomyocytes. Hum Mutat 32:1481–1491PubMed
15.
go back to reference Villard E, Perret C, Gary F, Proust C, Dilanian G, Hengstenberg C, Ruppert V, Arbustini E, Wichter T, Germain M, Dubourg O, Tavazzi L, Aumont MC, DeGroote P, Fauchier L, Trochu JN, Gibelin P, Aupetit JF, Stark K, Erdmann J, Hetzer R, Roberts AM, Barton PJ, Regitz-Zagrosek V, Aslam U, Duboscq-Bidot L, Meyborg M, Maisch B, Madeira H, Waldenstrom A, Galve E, Cleland JG, Dorent R, Roizes G, Zeller T, Blankenberg S, Goodall AH, Cook S, Tregouet DA, Tiret L, Isnard R, Komajda M, Charron P, Cambien F (2011) A genome-wide association study identifies two loci associated with heart failure due to dilated cardiomyopathy. Eur Heart J 32:1065–1076PubMedCentralPubMed Villard E, Perret C, Gary F, Proust C, Dilanian G, Hengstenberg C, Ruppert V, Arbustini E, Wichter T, Germain M, Dubourg O, Tavazzi L, Aumont MC, DeGroote P, Fauchier L, Trochu JN, Gibelin P, Aupetit JF, Stark K, Erdmann J, Hetzer R, Roberts AM, Barton PJ, Regitz-Zagrosek V, Aslam U, Duboscq-Bidot L, Meyborg M, Maisch B, Madeira H, Waldenstrom A, Galve E, Cleland JG, Dorent R, Roizes G, Zeller T, Blankenberg S, Goodall AH, Cook S, Tregouet DA, Tiret L, Isnard R, Komajda M, Charron P, Cambien F (2011) A genome-wide association study identifies two loci associated with heart failure due to dilated cardiomyopathy. Eur Heart J 32:1065–1076PubMedCentralPubMed
16.
go back to reference Feldman AM, Begay RL, Knezevic T, Myers VD, Slavov DB, Zhu W, Gowan K, Graw SL, Jones KL, Tilley DG, Coleman RC, Walinsky P, Cheung JY, Mestroni L, Khalili K, Taylor MR (2014) Decreased levels of bag3 in a family with a rare variant and in idiopathic dilated cardiomyopathy. J Cell Physiol 229:1697–1702PubMedCentralPubMed Feldman AM, Begay RL, Knezevic T, Myers VD, Slavov DB, Zhu W, Gowan K, Graw SL, Jones KL, Tilley DG, Coleman RC, Walinsky P, Cheung JY, Mestroni L, Khalili K, Taylor MR (2014) Decreased levels of bag3 in a family with a rare variant and in idiopathic dilated cardiomyopathy. J Cell Physiol 229:1697–1702PubMedCentralPubMed
17.
go back to reference De Marco M, D’Auria R, Rosati A, Vitulano G, Gigantino A, Citro R, Piscione F, Zilinski J, Januzzi JL Jr, Turco MC (2014) Bag3 protein in advanced-stage heart failure. JACC Heart Fail 2:673–675PubMed De Marco M, D’Auria R, Rosati A, Vitulano G, Gigantino A, Citro R, Piscione F, Zilinski J, Januzzi JL Jr, Turco MC (2014) Bag3 protein in advanced-stage heart failure. JACC Heart Fail 2:673–675PubMed
18.
go back to reference De Marco M, Falco A, Basile A, Rosati A, Festa M, d’Avenia M, Pascale M, Dal Piaz F, Bisogni R, Barcaroli D, Coppola G, Piscione F, Gigantino A, Citro R, De Rosa R, Vitulano G, Virtuoso N, Manganelli F, Palermo E, Siano F, Rosato G, Hahne M, Tiberti C, De Laurenzi V, Turco MC (2013) Detection of soluble bag3 and anti-bag3 antibodies in patients with chronic heart failure. Cell Death Dis 4:e495PubMedCentralPubMed De Marco M, Falco A, Basile A, Rosati A, Festa M, d’Avenia M, Pascale M, Dal Piaz F, Bisogni R, Barcaroli D, Coppola G, Piscione F, Gigantino A, Citro R, De Rosa R, Vitulano G, Virtuoso N, Manganelli F, Palermo E, Siano F, Rosato G, Hahne M, Tiberti C, De Laurenzi V, Turco MC (2013) Detection of soluble bag3 and anti-bag3 antibodies in patients with chronic heart failure. Cell Death Dis 4:e495PubMedCentralPubMed
19.
go back to reference Feldman AM, Mann DL, She L, Bristow MR, Maisel AS, McNamara DM, Walsh R, Lee DL, Wos S, Lang I, Wells G, Drazner MH, Schmedtje JF Jr, Pauly DF, Sueta CA, Di Maio M, Kron IL, Velazquez EJ, Lee KL (2013) Prognostic significance of biomarkers in predicting outcome in patients with coronary artery disease and left ventricular dysfunction: results of the biomarker substudy of the surgical treatment for ischemic heart failure trials. Circ Heart Fail 6:461–472PubMedCentralPubMed Feldman AM, Mann DL, She L, Bristow MR, Maisel AS, McNamara DM, Walsh R, Lee DL, Wos S, Lang I, Wells G, Drazner MH, Schmedtje JF Jr, Pauly DF, Sueta CA, Di Maio M, Kron IL, Velazquez EJ, Lee KL (2013) Prognostic significance of biomarkers in predicting outcome in patients with coronary artery disease and left ventricular dysfunction: results of the biomarker substudy of the surgical treatment for ischemic heart failure trials. Circ Heart Fail 6:461–472PubMedCentralPubMed
20.
go back to reference Lee HC, Cherk SW, Chan SK, Wong S, Tong TW, Ho WS, Chan AY, Lee KC, Mak CM (2012) Bag3-related myofibrillar myopathy in a Chinese family. Clin Genet 81:394–398PubMed Lee HC, Cherk SW, Chan SK, Wong S, Tong TW, Ho WS, Chan AY, Lee KC, Mak CM (2012) Bag3-related myofibrillar myopathy in a Chinese family. Clin Genet 81:394–398PubMed
21.
go back to reference Citro R, d’Avenia M, De Marco M, Giudice R, Mirra M, Ravera A, Silverio A, Farina R, Silvestri F, Gravina P, Villa F, Puca AA, De Windt L, De Laurenzi V, Bossone E, Turco MC, Piscione F (2013) Polymorphisms of the antiapoptotic protein bag3 may play a role in the pathogenesis of tako-tsubo cardiomyopathy. Int J Cardiol 168:1663–1665PubMed Citro R, d’Avenia M, De Marco M, Giudice R, Mirra M, Ravera A, Silverio A, Farina R, Silvestri F, Gravina P, Villa F, Puca AA, De Windt L, De Laurenzi V, Bossone E, Turco MC, Piscione F (2013) Polymorphisms of the antiapoptotic protein bag3 may play a role in the pathogenesis of tako-tsubo cardiomyopathy. Int J Cardiol 168:1663–1665PubMed
22.
go back to reference Takayama S, Xie Z, Reed JC (1999) An evolutionarily conserved family of hsp70/hsc70 molecular chaperone regulators. J Biol Chem 274:781–786PubMed Takayama S, Xie Z, Reed JC (1999) An evolutionarily conserved family of hsp70/hsc70 molecular chaperone regulators. J Biol Chem 274:781–786PubMed
23.
go back to reference Antoku K, Maser RS, Scully WJ Jr, Delach SM, Johnson DE (2001) Isolation of bcl-2 binding proteins that exhibit homology with bag-1 and suppressor of death domains protein. Biochem Biophys Res Commun 286:1003–1010PubMed Antoku K, Maser RS, Scully WJ Jr, Delach SM, Johnson DE (2001) Isolation of bcl-2 binding proteins that exhibit homology with bag-1 and suppressor of death domains protein. Biochem Biophys Res Commun 286:1003–1010PubMed
24.
go back to reference Lee JH, Takahashi T, Yasuhara N, Inazawa J, Kamada S, Tsujimoto Y (1999) Bis, a bcl-2-binding protein that synergizes with bcl-2 in preventing cell death. Oncogene 18:6183–6190PubMed Lee JH, Takahashi T, Yasuhara N, Inazawa J, Kamada S, Tsujimoto Y (1999) Bis, a bcl-2-binding protein that synergizes with bcl-2 in preventing cell death. Oncogene 18:6183–6190PubMed
25.
go back to reference Wada S, Hamada M, Satoh N (2006) A genomewide analysis of genes for the heat shock protein 70 chaperone system in the ascidian ciona intestinalis. Cell Stress Chaperon 11:23–33 Wada S, Hamada M, Satoh N (2006) A genomewide analysis of genes for the heat shock protein 70 chaperone system in the ascidian ciona intestinalis. Cell Stress Chaperon 11:23–33
26.
go back to reference Takayama S, Reed JC (2001) Molecular chaperone targeting and regulation by bag family proteins. Nat Cell Biol 3:E237–E241PubMed Takayama S, Reed JC (2001) Molecular chaperone targeting and regulation by bag family proteins. Nat Cell Biol 3:E237–E241PubMed
27.
go back to reference Briknarova K, Takayama S, Homma S, Baker K, Cabezas E, Hoyt DW, Li Z, Satterthwait AC, Ely KR (2002) Bag4/sodd protein contains a short bag domain. J Biol Chem 277:31172–31178PubMed Briknarova K, Takayama S, Homma S, Baker K, Cabezas E, Hoyt DW, Li Z, Satterthwait AC, Ely KR (2002) Bag4/sodd protein contains a short bag domain. J Biol Chem 277:31172–31178PubMed
28.
go back to reference Takayama S, Sato T, Krajewski S, Kochel K, Irie S, Millan JA, Reed JC (1995) Cloning and functional analysis of bag-1: a novel bcl-2-binding protein with anti-cell death activity. Cell 80:279–284PubMed Takayama S, Sato T, Krajewski S, Kochel K, Irie S, Millan JA, Reed JC (1995) Cloning and functional analysis of bag-1: a novel bcl-2-binding protein with anti-cell death activity. Cell 80:279–284PubMed
29.
go back to reference Jiang Y, Woronicz JD, Liu W, Goeddel DV (1999) Prevention of constitutive TNF receptor 1 signaling by silencer of death domains. Science 283:543–546PubMed Jiang Y, Woronicz JD, Liu W, Goeddel DV (1999) Prevention of constitutive TNF receptor 1 signaling by silencer of death domains. Science 283:543–546PubMed
30.
go back to reference Wang HG, Reed JC (1998) Bc1-2, raf-1 and mitochondrial regulation of apoptosis. BioFactors 8:13–16PubMed Wang HG, Reed JC (1998) Bc1-2, raf-1 and mitochondrial regulation of apoptosis. BioFactors 8:13–16PubMed
31.
go back to reference Ingham RJ, Colwill K, Howard C, Dettwiler S, Lim CS, Yu J, Hersi K, Raaijmakers J, Gish G, Mbamalu G, Taylor L, Yeung B, Vassilovski G, Amin M, Chen F, Matskova L, Winberg G, Ernberg I, Linding R, O’Donnell P, Starostine A, Keller W, Metalnikov P, Stark C, Pawson T (2005) Ww domains provide a platform for the assembly of multiprotein networks. Mol Cell Biol 25:7092–7106PubMedCentralPubMed Ingham RJ, Colwill K, Howard C, Dettwiler S, Lim CS, Yu J, Hersi K, Raaijmakers J, Gish G, Mbamalu G, Taylor L, Yeung B, Vassilovski G, Amin M, Chen F, Matskova L, Winberg G, Ernberg I, Linding R, O’Donnell P, Starostine A, Keller W, Metalnikov P, Stark C, Pawson T (2005) Ww domains provide a platform for the assembly of multiprotein networks. Mol Cell Biol 25:7092–7106PubMedCentralPubMed
32.
go back to reference Miki K, Eddy EM (2002) Tumor necrosis factor receptor 1 is an atpase regulated by silencer of death domain. Mol Cell Biol 22:2536–2543PubMedCentralPubMed Miki K, Eddy EM (2002) Tumor necrosis factor receptor 1 is an atpase regulated by silencer of death domain. Mol Cell Biol 22:2536–2543PubMedCentralPubMed
33.
go back to reference Thress K, Henzel W, Shillinglaw W, Kornbluth S (1998) Scythe: a novel reaper-binding apoptotic regulator. EMBO J 17:6135–6143PubMedCentralPubMed Thress K, Henzel W, Shillinglaw W, Kornbluth S (1998) Scythe: a novel reaper-binding apoptotic regulator. EMBO J 17:6135–6143PubMedCentralPubMed
34.
go back to reference Thress K, Song J, Morimoto RI, Kornbluth S (2001) Reversible inhibition of hsp70 chaperone function by scythe and reaper. EMBO J 20:1033–1041PubMedCentralPubMed Thress K, Song J, Morimoto RI, Kornbluth S (2001) Reversible inhibition of hsp70 chaperone function by scythe and reaper. EMBO J 20:1033–1041PubMedCentralPubMed
35.
go back to reference Andre B, Springael JY (1994) Wwp, a new amino acid motif present in single or multiple copies in various proteins including dystrophin and the sh3-binding yes-associated protein yap65. Biochem Biophys Res Commun 205:1201–1205PubMed Andre B, Springael JY (1994) Wwp, a new amino acid motif present in single or multiple copies in various proteins including dystrophin and the sh3-binding yes-associated protein yap65. Biochem Biophys Res Commun 205:1201–1205PubMed
36.
go back to reference Doong H, Price J, Kim YS, Gasbarre C, Probst J, Liotta LA, Blanchette J, Rizzo K, Kohn E (2000) Cair-1/bag-3 forms an egf-regulated ternary complex with phospholipase c-gamma and hsp70/hsc70. Oncogene 19:4385–4395PubMed Doong H, Price J, Kim YS, Gasbarre C, Probst J, Liotta LA, Blanchette J, Rizzo K, Kohn E (2000) Cair-1/bag-3 forms an egf-regulated ternary complex with phospholipase c-gamma and hsp70/hsc70. Oncogene 19:4385–4395PubMed
37.
go back to reference Li SS (2005) Specificity and versatility of SH3 and other proline-recognition domains: structural basis and implications for cellular signal transduction. Biochem J 390:641–653PubMedCentralPubMed Li SS (2005) Specificity and versatility of SH3 and other proline-recognition domains: structural basis and implications for cellular signal transduction. Biochem J 390:641–653PubMedCentralPubMed
38.
go back to reference Hishiya A, Salman MN, Carra S, Kampinga HH, Takayama S (2011) Bag3 directly interacts with mutated alphab-crystallin to suppress its aggregation and toxicity. PLoS ONE 6:e16828PubMedCentralPubMed Hishiya A, Salman MN, Carra S, Kampinga HH, Takayama S (2011) Bag3 directly interacts with mutated alphab-crystallin to suppress its aggregation and toxicity. PLoS ONE 6:e16828PubMedCentralPubMed
39.
go back to reference Carra S, Sivilotti M, Chavez Zobel AT, Lambert H, Landry J (2005) Hspb8, a small heat shock protein mutated in human neuromuscular disorders, has in vivo chaperone activity in cultured cells. Hum Mol Genet 14:1659–1669PubMed Carra S, Sivilotti M, Chavez Zobel AT, Lambert H, Landry J (2005) Hspb8, a small heat shock protein mutated in human neuromuscular disorders, has in vivo chaperone activity in cultured cells. Hum Mol Genet 14:1659–1669PubMed
40.
go back to reference Carra S, Seguin SJ, Landry J (2008) Hspb8 and bag3: a new chaperone complex targeting misfolded proteins to macroautophagy. Autophagy 4:237–239PubMed Carra S, Seguin SJ, Landry J (2008) Hspb8 and bag3: a new chaperone complex targeting misfolded proteins to macroautophagy. Autophagy 4:237–239PubMed
41.
go back to reference Chang JS, Kim SK, Kwon TK, Bae SS, Min DS, Lee YH, Kim SO, Seo JK, Choi JH, Suh PG (2005) Pleckstrin homology domains of phospholipase c-gamma1 directly interact with beta-tubulin for activation of phospholipase c-gamma1 and reciprocal modulation of beta-tubulin function in microtubule assembly. J Biol Chem 280:6897–6905PubMed Chang JS, Kim SK, Kwon TK, Bae SS, Min DS, Lee YH, Kim SO, Seo JK, Choi JH, Suh PG (2005) Pleckstrin homology domains of phospholipase c-gamma1 directly interact with beta-tubulin for activation of phospholipase c-gamma1 and reciprocal modulation of beta-tubulin function in microtubule assembly. J Biol Chem 280:6897–6905PubMed
42.
go back to reference Pagliuca MG, Lerose R, Cigliano S, Leone A (2003) Regulation by heavy metals and temperature of the human bag-3 gene, a modulator of hsp70 activity. FEBS Lett 541:11–15PubMed Pagliuca MG, Lerose R, Cigliano S, Leone A (2003) Regulation by heavy metals and temperature of the human bag-3 gene, a modulator of hsp70 activity. FEBS Lett 541:11–15PubMed
43.
go back to reference Liao Q, Ozawa F, Friess H, Zimmermann A, Takayama S, Reed JC, Kleeff J, Buchler MW (2001) The anti-apoptotic protein bag-3 is overexpressed in pancreatic cancer and induced by heat stress in pancreatic cancer cell lines. FEBS Lett 503:151–157PubMed Liao Q, Ozawa F, Friess H, Zimmermann A, Takayama S, Reed JC, Kleeff J, Buchler MW (2001) The anti-apoptotic protein bag-3 is overexpressed in pancreatic cancer and induced by heat stress in pancreatic cancer cell lines. FEBS Lett 503:151–157PubMed
44.
go back to reference Bonelli P, Petrella A, Rosati A, Romano MF, Lerose R, Pagliuca MG, Amelio T, Festa M, Martire G, Venuta S, Turco MC, Leone A (2004) Bag3 protein regulates stress-induced apoptosis in normal and neoplastic leukocytes. Leukemia 18:358–360PubMed Bonelli P, Petrella A, Rosati A, Romano MF, Lerose R, Pagliuca MG, Amelio T, Festa M, Martire G, Venuta S, Turco MC, Leone A (2004) Bag3 protein regulates stress-induced apoptosis in normal and neoplastic leukocytes. Leukemia 18:358–360PubMed
45.
go back to reference Wang HQ, Liu HM, Zhang HY, Guan Y, Du ZX (2008) Transcriptional upregulation of bag3 upon proteasome inhibition. Biochem Biophys Res Commun 365:381–385PubMed Wang HQ, Liu HM, Zhang HY, Guan Y, Du ZX (2008) Transcriptional upregulation of bag3 upon proteasome inhibition. Biochem Biophys Res Commun 365:381–385PubMed
46.
go back to reference Li C, Li S, Kong DH, Meng X, Zong ZH, Liu BQ, Guan Y, Du ZX, Wang HQ (2013) Bag3 is upregulated by c-jun and stabilizes jund. Biochim Biophys Acta 1833:3346–3354PubMed Li C, Li S, Kong DH, Meng X, Zong ZH, Liu BQ, Guan Y, Du ZX, Wang HQ (2013) Bag3 is upregulated by c-jun and stabilizes jund. Biochim Biophys Acta 1833:3346–3354PubMed
47.
go back to reference Chen L, Wu W, Dentchev T, Zeng Y, Wang J, Tsui I, Tobias JW, Bennett J, Baldwin D, Dunaief JL (2004) Light damage induced changes in mouse retinal gene expression. Exp Eye Res 79:239–247PubMed Chen L, Wu W, Dentchev T, Zeng Y, Wang J, Tsui I, Tobias JW, Bennett J, Baldwin D, Dunaief JL (2004) Light damage induced changes in mouse retinal gene expression. Exp Eye Res 79:239–247PubMed
48.
go back to reference Lee MY, Kim SY, Choi JS, Choi YS, Jeon MH, Lee JH, Kim IK (2002) Induction of bis, a bcl-2-binding protein, in reactive astrocytes of the rat hippocampus following kainic acid-induced seizure. Exp Mol Med 34:167–171PubMed Lee MY, Kim SY, Choi JS, Choi YS, Jeon MH, Lee JH, Kim IK (2002) Induction of bis, a bcl-2-binding protein, in reactive astrocytes of the rat hippocampus following kainic acid-induced seizure. Exp Mol Med 34:167–171PubMed
49.
go back to reference Friedrich B, Janessa A, Schmieder R, Risler T, Alexander D (2008) Acute effects of haemodialysis on pro-/anti- apoptotic genes in peripheral blood leukocytes. Cell Physiol Biochem 22:423–430PubMed Friedrich B, Janessa A, Schmieder R, Risler T, Alexander D (2008) Acute effects of haemodialysis on pro-/anti- apoptotic genes in peripheral blood leukocytes. Cell Physiol Biochem 22:423–430PubMed
50.
go back to reference Jung SE, Kim YK, Youn DY, Lim MH, Ko JH, Ahn YS, Lee JH (2010) Down-modulation of bis sensitizes cell death in c6 glioma cells induced by oxygen–glucose deprivation. Brain Res 1349:1–10PubMed Jung SE, Kim YK, Youn DY, Lim MH, Ko JH, Ahn YS, Lee JH (2010) Down-modulation of bis sensitizes cell death in c6 glioma cells induced by oxygen–glucose deprivation. Brain Res 1349:1–10PubMed
51.
go back to reference Yan H, Frost P, Shi Y, Hoang B, Sharma S, Fisher M, Gera J, Lichtenstein A (2006) Mechanism by which mammalian target of rapamycin inhibitors sensitize multiple myeloma cells to dexamethasone-induced apoptosis. Cancer Res 66:2305–2313PubMed Yan H, Frost P, Shi Y, Hoang B, Sharma S, Fisher M, Gera J, Lichtenstein A (2006) Mechanism by which mammalian target of rapamycin inhibitors sensitize multiple myeloma cells to dexamethasone-induced apoptosis. Cancer Res 66:2305–2313PubMed
52.
go back to reference Rosati A, Basile A, Falco A, d’Avenia M, Festa M, Graziano V, De Laurenzi V, Arra C, Pascale M, Turco MC (2012) Role of bag3 protein in leukemia cell survival and response to therapy. Biochim Biophys Acta 1826:365–369PubMed Rosati A, Basile A, Falco A, d’Avenia M, Festa M, Graziano V, De Laurenzi V, Arra C, Pascale M, Turco MC (2012) Role of bag3 protein in leukemia cell survival and response to therapy. Biochim Biophys Acta 1826:365–369PubMed
53.
go back to reference Romano MF, Festa M, Pagliuca G, Lerose R, Bisogni R, Chiurazzi F, Storti G, Volpe S, Venuta S, Turco MC, Leone A (2003) Bag3 protein controls b-chronic lymphocytic leukaemia cell apoptosis. Cell Death Differ 10:383–385PubMed Romano MF, Festa M, Pagliuca G, Lerose R, Bisogni R, Chiurazzi F, Storti G, Volpe S, Venuta S, Turco MC, Leone A (2003) Bag3 protein controls b-chronic lymphocytic leukaemia cell apoptosis. Cell Death Differ 10:383–385PubMed
54.
go back to reference Chiappetta G, Ammirante M, Basile A, Rosati A, Festa M, Monaco M, Vuttariello E, Pasquinelli R, Arra C, Zerilli M, Todaro M, Stassi G, Pezzullo L, Gentilella A, Tosco A, Pascale M, Marzullo L, Belisario MA, Turco MC, Leone A (2007) The antiapoptotic protein bag3 is expressed in thyroid carcinomas and modulates apoptosis mediated by tumor necrosis factor-related apoptosis-inducing ligand. J Clin Endocrinol Metab 92:1159–1163PubMed Chiappetta G, Ammirante M, Basile A, Rosati A, Festa M, Monaco M, Vuttariello E, Pasquinelli R, Arra C, Zerilli M, Todaro M, Stassi G, Pezzullo L, Gentilella A, Tosco A, Pascale M, Marzullo L, Belisario MA, Turco MC, Leone A (2007) The antiapoptotic protein bag3 is expressed in thyroid carcinomas and modulates apoptosis mediated by tumor necrosis factor-related apoptosis-inducing ligand. J Clin Endocrinol Metab 92:1159–1163PubMed
55.
go back to reference Franco R, Scognamiglio G, Salerno V, Sebastiani A, Cennamo G, Ascierto PA, Botti G, Turco MC, Rosati A (2012) Expression of the anti-apoptotic protein bag3 in human melanomas. J Investig Dermatol 132:252–254PubMed Franco R, Scognamiglio G, Salerno V, Sebastiani A, Cennamo G, Ascierto PA, Botti G, Turco MC, Rosati A (2012) Expression of the anti-apoptotic protein bag3 in human melanomas. J Investig Dermatol 132:252–254PubMed
56.
go back to reference Zhang Y, Wang JH, Lu Q, Wang YJ (2012) Bag3 promotes resistance to apoptosis through bcl-2 family members in non-small cell lung cancer. Oncol Rep 27:109–113PubMed Zhang Y, Wang JH, Lu Q, Wang YJ (2012) Bag3 promotes resistance to apoptosis through bcl-2 family members in non-small cell lung cancer. Oncol Rep 27:109–113PubMed
57.
go back to reference Xiao H, Cheng S, Tong R, Lv Z, Ding C, Du C, Xie H, Zhou L, Wu J, Zheng S (2014) Bag3 regulates epithelial–mesenchymal transition and angiogenesis in human hepatocellular carcinoma. Lab Investig 94:252–261PubMed Xiao H, Cheng S, Tong R, Lv Z, Ding C, Du C, Xie H, Zhou L, Wu J, Zheng S (2014) Bag3 regulates epithelial–mesenchymal transition and angiogenesis in human hepatocellular carcinoma. Lab Investig 94:252–261PubMed
58.
go back to reference Rosati A, Bersani S, Tavano F, Dalla Pozza E, De Marco M, Palmieri M, De Laurenzi V, Franco R, Scognamiglio G, Palaia R, Fontana A, di Sebastiano P, Donadelli M, Dando I, Medema JP, Dijk F, Welling L, di Mola FF, Pezzilli R, Turco MC, Scarpa A (2012) Expression of the antiapoptotic protein bag3 is a feature of pancreatic adenocarcinoma and its overexpression is associated with poorer survival. Am J Pathol 181:1524–1529PubMed Rosati A, Bersani S, Tavano F, Dalla Pozza E, De Marco M, Palmieri M, De Laurenzi V, Franco R, Scognamiglio G, Palaia R, Fontana A, di Sebastiano P, Donadelli M, Dando I, Medema JP, Dijk F, Welling L, di Mola FF, Pezzilli R, Turco MC, Scarpa A (2012) Expression of the antiapoptotic protein bag3 is a feature of pancreatic adenocarcinoma and its overexpression is associated with poorer survival. Am J Pathol 181:1524–1529PubMed
59.
go back to reference Chiappetta G, Basile A, Barbieri A, Falco A, Rosati A, Festa M, Pasquinelli R, Califano D, Palma G, Costanzo R, Barcaroli D, Capunzo M, Franco R, Rocco G, Pascale M, Turco MC, De Laurenzi V, Arra C (2014) The anti-apoptotic bag3 protein is expressed in lung carcinomas and regulates small cell lung carcinoma (sclc) tumor growth. Oncotarget 5:6846–6853PubMedCentralPubMed Chiappetta G, Basile A, Barbieri A, Falco A, Rosati A, Festa M, Pasquinelli R, Califano D, Palma G, Costanzo R, Barcaroli D, Capunzo M, Franco R, Rocco G, Pascale M, Turco MC, De Laurenzi V, Arra C (2014) The anti-apoptotic bag3 protein is expressed in lung carcinomas and regulates small cell lung carcinoma (sclc) tumor growth. Oncotarget 5:6846–6853PubMedCentralPubMed
60.
go back to reference Festa M, Del Valle L, Khalili K, Franco R, Scognamiglio G, Graziano V, De Laurenzi V, Turco MC, Rosati A (2011) Bag3 protein is overexpressed in human glioblastoma and is a potential target for therapy. Am J Pathol 178:2504–2512PubMedCentralPubMed Festa M, Del Valle L, Khalili K, Franco R, Scognamiglio G, Graziano V, De Laurenzi V, Turco MC, Rosati A (2011) Bag3 protein is overexpressed in human glioblastoma and is a potential target for therapy. Am J Pathol 178:2504–2512PubMedCentralPubMed
61.
go back to reference Iwasaki M, Homma S, Hishiya A, Dolezal SJ, Reed JC, Takayama S (2007) Bag3 regulates motility and adhesion of epithelial cancer cells. Cancer Res 67:10252–10259PubMed Iwasaki M, Homma S, Hishiya A, Dolezal SJ, Reed JC, Takayama S (2007) Bag3 regulates motility and adhesion of epithelial cancer cells. Cancer Res 67:10252–10259PubMed
62.
go back to reference Gentilella A, Khalili K (2009) Autoregulation of co-chaperone bag3 gene transcription. J Cell Biochem 108:1117–1124PubMed Gentilella A, Khalili K (2009) Autoregulation of co-chaperone bag3 gene transcription. J Cell Biochem 108:1117–1124PubMed
63.
go back to reference Franceschelli S, Rosati A, Lerose R, De Nicola S, Turco MC, Pascale M (2008) Bag3 gene expression is regulated by heat shock factor 1. J Cell Physiol 215:575–577PubMed Franceschelli S, Rosati A, Lerose R, De Nicola S, Turco MC, Pascale M (2008) Bag3 gene expression is regulated by heat shock factor 1. J Cell Physiol 215:575–577PubMed
64.
go back to reference Ulbricht A, Eppler FJ, Tapia VE, van der Ven PF, Hampe N, Hersch N, Vakeel P, Stadel D, Haas A, Saftig P, Behrends C, Furst DO, Volkmer R, Hoffmann B, Kolanus W, Hohfeld J (2013) Cellular mechanotransduction relies on tension-induced and chaperone-assisted autophagy. Curr Biol 23:430–435PubMed Ulbricht A, Eppler FJ, Tapia VE, van der Ven PF, Hampe N, Hersch N, Vakeel P, Stadel D, Haas A, Saftig P, Behrends C, Furst DO, Volkmer R, Hoffmann B, Kolanus W, Hohfeld J (2013) Cellular mechanotransduction relies on tension-induced and chaperone-assisted autophagy. Curr Biol 23:430–435PubMed
65.
go back to reference Yang L, Han Y, Suarez Saiz F, Minden MD (2007) A tumor suppressor and oncogene: the wt1 story. Leukemia 21:868–876PubMed Yang L, Han Y, Suarez Saiz F, Minden MD (2007) A tumor suppressor and oncogene: the wt1 story. Leukemia 21:868–876PubMed
66.
go back to reference Cesaro E, Montano G, Rosati A, Crescitelli R, Izzo P, Turco MC, Costanzo P (2010) Wt1 protein is a transcriptional activator of the antiapoptotic bag3 gene. Leukemia 24:1204–1206PubMed Cesaro E, Montano G, Rosati A, Crescitelli R, Izzo P, Turco MC, Costanzo P (2010) Wt1 protein is a transcriptional activator of the antiapoptotic bag3 gene. Leukemia 24:1204–1206PubMed
67.
go back to reference Gentilella A, Passiatore G, Deshmane S, Turco MC, Khalili K (2008) Activation of bag3 by egr-1 in response to fgf-2 in neuroblastoma cells. Oncogene 27:5011–5018PubMed Gentilella A, Passiatore G, Deshmane S, Turco MC, Khalili K (2008) Activation of bag3 by egr-1 in response to fgf-2 in neuroblastoma cells. Oncogene 27:5011–5018PubMed
68.
go back to reference Ben Aicha S, Lessard J, Pelletier M, Fournier A, Calvo E, Labrie C (2007) Transcriptional profiling of genes that are regulated by the endoplasmic reticulum-bound transcription factor aibzip/creb3l4 in prostate cells. Physiol Genomics 31:295–305PubMed Ben Aicha S, Lessard J, Pelletier M, Fournier A, Calvo E, Labrie C (2007) Transcriptional profiling of genes that are regulated by the endoplasmic reticulum-bound transcription factor aibzip/creb3l4 in prostate cells. Physiol Genomics 31:295–305PubMed
69.
70.
go back to reference Li N, Du ZX, Zong ZH, Liu BQ, Li C, Zhang Q, Wang HQ (2013) Pkcdelta-mediated phosphorylation of bag3 at ser187 site induces epithelial-mesenchymal transition and enhances invasiveness in thyroid cancer fro cells. Oncogene 32:4539–4548PubMed Li N, Du ZX, Zong ZH, Liu BQ, Li C, Zhang Q, Wang HQ (2013) Pkcdelta-mediated phosphorylation of bag3 at ser187 site induces epithelial-mesenchymal transition and enhances invasiveness in thyroid cancer fro cells. Oncogene 32:4539–4548PubMed
71.
go back to reference Bruno AP, De Simone FI, Iorio V, De Marco M, Khalili K, Sariyer IK, Capunzo M, Nori SL, Rosati A (2014) Hiv-1 tat protein induces glial cell autophagy through enhancement of bag3 protein levels. Cell Cycle 13:3640–3644PubMed Bruno AP, De Simone FI, Iorio V, De Marco M, Khalili K, Sariyer IK, Capunzo M, Nori SL, Rosati A (2014) Hiv-1 tat protein induces glial cell autophagy through enhancement of bag3 protein levels. Cell Cycle 13:3640–3644PubMed
72.
go back to reference Du ZX, Meng X, Zhang HY, Guan Y, Wang HQ (2008) Caspase-dependent cleavage of bag3 in proteasome inhibitors-induced apoptosis in thyroid cancer cells. Biochem Biophys Res Commun 369:894–898PubMed Du ZX, Meng X, Zhang HY, Guan Y, Wang HQ (2008) Caspase-dependent cleavage of bag3 in proteasome inhibitors-induced apoptosis in thyroid cancer cells. Biochem Biophys Res Commun 369:894–898PubMed
73.
go back to reference Liu BQ, Du ZX, Zong ZH, Li C, Li N, Zhang Q, Kong DH, Wang HQ (2013) Bag3-dependent noncanonical autophagy induced by proteasome inhibition in hepg2 cells. Autophagy 9:905–916PubMedCentralPubMed Liu BQ, Du ZX, Zong ZH, Li C, Li N, Zhang Q, Kong DH, Wang HQ (2013) Bag3-dependent noncanonical autophagy induced by proteasome inhibition in hepg2 cells. Autophagy 9:905–916PubMedCentralPubMed
74.
go back to reference Wang HQ, Meng X, Liu BQ, Li C, Gao YY, Niu XF, Li N, Guan Y, Du ZX (2012) Involvement of jnk and nf-kappab pathways in lipopolysaccharide (lps)-induced bag3 expression in human monocytic cells. Exp Cell Res 318:16–24PubMed Wang HQ, Meng X, Liu BQ, Li C, Gao YY, Niu XF, Li N, Guan Y, Du ZX (2012) Involvement of jnk and nf-kappab pathways in lipopolysaccharide (lps)-induced bag3 expression in human monocytic cells. Exp Cell Res 318:16–24PubMed
75.
go back to reference Zhong W, Zhu H, Sheng F, Tian Y, Zhou J, Chen Y, Li S, Lin J (2014) Activation of the mapk11/12/13/14 (p38 mapk) pathway regulates the transcription of autophagy genes in response to oxidative stress induced by a novel copper complex in hela cells. Autophagy 10:1285–1300PubMed Zhong W, Zhu H, Sheng F, Tian Y, Zhou J, Chen Y, Li S, Lin J (2014) Activation of the mapk11/12/13/14 (p38 mapk) pathway regulates the transcription of autophagy genes in response to oxidative stress induced by a novel copper complex in hela cells. Autophagy 10:1285–1300PubMed
76.
go back to reference Nandi D, Tahiliani P, Kumar A, Chandu D (2006) The ubiquitin-proteasome system. J Biosci 31:137–155PubMed Nandi D, Tahiliani P, Kumar A, Chandu D (2006) The ubiquitin-proteasome system. J Biosci 31:137–155PubMed
77.
go back to reference Merabova N, Sariyer IK, Saribas AS, Knezevic T, Gordon J, Turco MC, Rosati A, Weaver M, Landry J, Khalili K (2015) Ww domain of bag3 is required for the induction of autophagy in glioma cells. J Cell Physiol 230:831–841PubMed Merabova N, Sariyer IK, Saribas AS, Knezevic T, Gordon J, Turco MC, Rosati A, Weaver M, Landry J, Khalili K (2015) Ww domain of bag3 is required for the induction of autophagy in glioma cells. J Cell Physiol 230:831–841PubMed
78.
go back to reference Gamerdinger M, Carra S, Behl C (2011) Emerging roles of molecular chaperones and co-chaperones in selective autophagy: focus on bag proteins. J Mol Med 89:1175–1182PubMed Gamerdinger M, Carra S, Behl C (2011) Emerging roles of molecular chaperones and co-chaperones in selective autophagy: focus on bag proteins. J Mol Med 89:1175–1182PubMed
79.
go back to reference Hetz C, Thielen P, Matus S, Nassif M, Court F, Kiffin R, Martinez G, Cuervo AM, Brown RH, Glimcher LH (2009) Xbp-1 deficiency in the nervous system protects against amyotrophic lateral sclerosis by increasing autophagy. Genes Dev 23:2294–2306PubMedCentralPubMed Hetz C, Thielen P, Matus S, Nassif M, Court F, Kiffin R, Martinez G, Cuervo AM, Brown RH, Glimcher LH (2009) Xbp-1 deficiency in the nervous system protects against amyotrophic lateral sclerosis by increasing autophagy. Genes Dev 23:2294–2306PubMedCentralPubMed
80.
go back to reference Ravikumar B, Vacher C, Berger Z, Davies JE, Luo S, Oroz LG, Scaravilli F, Easton DF, Duden R, O’Kane CJ, Rubinsztein DC (2004) Inhibition of mTOR induces autophagy and reduces toxicity of polyglutamine expansions in fly and mouse models of huntington disease. Nat Genet 36:585–595PubMed Ravikumar B, Vacher C, Berger Z, Davies JE, Luo S, Oroz LG, Scaravilli F, Easton DF, Duden R, O’Kane CJ, Rubinsztein DC (2004) Inhibition of mTOR induces autophagy and reduces toxicity of polyglutamine expansions in fly and mouse models of huntington disease. Nat Genet 36:585–595PubMed
81.
go back to reference Sarkar S, Ravikumar B, Floto RA, Rubinsztein DC (2009) Rapamycin and mTOR-independent autophagy inducers ameliorate toxicity of polyglutamine-expanded huntingtin and related proteinopathies. Cell Death Differ 16:46–56PubMed Sarkar S, Ravikumar B, Floto RA, Rubinsztein DC (2009) Rapamycin and mTOR-independent autophagy inducers ameliorate toxicity of polyglutamine-expanded huntingtin and related proteinopathies. Cell Death Differ 16:46–56PubMed
82.
go back to reference Seidel K, Vinet J, Dunnen WF, Brunt ER, Meister M, Boncoraglio A, Zijlstra MP, Boddeke HW, Rub U, Kampinga HH, Carra S (2012) The hspb8-bag3 chaperone complex is upregulated in astrocytes in the human brain affected by protein aggregation diseases. Neuropathol Appl Neurobiol 38:39–53PubMed Seidel K, Vinet J, Dunnen WF, Brunt ER, Meister M, Boncoraglio A, Zijlstra MP, Boddeke HW, Rub U, Kampinga HH, Carra S (2012) The hspb8-bag3 chaperone complex is upregulated in astrocytes in the human brain affected by protein aggregation diseases. Neuropathol Appl Neurobiol 38:39–53PubMed
83.
go back to reference Lei Z, Brizzee C, Johnson GV (2015) Bag3 facilitates the clearance of endogenous tau in primary neurons. Neurobiol Aging 36:241–248PubMed Lei Z, Brizzee C, Johnson GV (2015) Bag3 facilitates the clearance of endogenous tau in primary neurons. Neurobiol Aging 36:241–248PubMed
84.
go back to reference Doong H, Vrailas A, Kohn EC (2002) What’s in the ‘bag’?—a functional domain analysis of the bag-family proteins. Cancer Lett 188:25–32PubMed Doong H, Vrailas A, Kohn EC (2002) What’s in the ‘bag’?—a functional domain analysis of the bag-family proteins. Cancer Lett 188:25–32PubMed
85.
go back to reference Carra S, Seguin SJ, Lambert H, Landry J (2008) Hspb8 chaperone activity toward poly(q)-containing proteins depends on its association with bag3, a stimulator of macroautophagy. J Biol Chem 283:1437–1444PubMed Carra S, Seguin SJ, Lambert H, Landry J (2008) Hspb8 chaperone activity toward poly(q)-containing proteins depends on its association with bag3, a stimulator of macroautophagy. J Biol Chem 283:1437–1444PubMed
86.
go back to reference Fuchs MPD, Seguin SJ, Lambert H, Carra S, Charette SJ, Landry J (2009) Identification of the key structural motifs involved in hspb8/hspb6-bag3 interaction. Biochem J 425:245–255PubMed Fuchs MPD, Seguin SJ, Lambert H, Carra S, Charette SJ, Landry J (2009) Identification of the key structural motifs involved in hspb8/hspb6-bag3 interaction. Biochem J 425:245–255PubMed
87.
go back to reference Crippa V, Sau D, Rusmini P, Boncoraglio A, Onesto E, Bolzoni E, Galbiati M, Fontana E, Marino M, Carra S, Bendotti C, De Biasi S, Poletti A (2010) The small heat shock protein b8 (hspb8) promotes autophagic removal of misfolded proteins involved in amyotrophic lateral sclerosis (als). Hum Mol Genet 19:3440–3456PubMed Crippa V, Sau D, Rusmini P, Boncoraglio A, Onesto E, Bolzoni E, Galbiati M, Fontana E, Marino M, Carra S, Bendotti C, De Biasi S, Poletti A (2010) The small heat shock protein b8 (hspb8) promotes autophagic removal of misfolded proteins involved in amyotrophic lateral sclerosis (als). Hum Mol Genet 19:3440–3456PubMed
88.
go back to reference Gamerdinger M, Hajieva P, Kaya AM, Wolfrum U, Hartl FU, Behl C (2009) Protein quality control during aging involves recruitment of the macroautophagy pathway by bag3. EMBO J 28:889–901PubMedCentralPubMed Gamerdinger M, Hajieva P, Kaya AM, Wolfrum U, Hartl FU, Behl C (2009) Protein quality control during aging involves recruitment of the macroautophagy pathway by bag3. EMBO J 28:889–901PubMedCentralPubMed
89.
go back to reference Gamerdinger M, Kaya AM, Wolfrum U, Clement AM, Behl C (2011) Bag3 mediates chaperone-based aggresome-targeting and selective autophagy of misfolded proteins. EMBO Rep 12:149–156PubMedCentralPubMed Gamerdinger M, Kaya AM, Wolfrum U, Clement AM, Behl C (2011) Bag3 mediates chaperone-based aggresome-targeting and selective autophagy of misfolded proteins. EMBO Rep 12:149–156PubMedCentralPubMed
90.
go back to reference Bjorkoy G, Lamark T, Brech A, Outzen H, Perander M, Overvatn A, Stenmark H, Johansen T (2005) P62/sqstm1 forms protein aggregates degraded by autophagy and has a protective effect on huntingtin-induced cell death. J Cell Biol 171:603–614PubMedCentralPubMed Bjorkoy G, Lamark T, Brech A, Outzen H, Perander M, Overvatn A, Stenmark H, Johansen T (2005) P62/sqstm1 forms protein aggregates degraded by autophagy and has a protective effect on huntingtin-induced cell death. J Cell Biol 171:603–614PubMedCentralPubMed
91.
go back to reference Roberts AJ, Kon T, Knight PJ, Sutoh K, Burgess SA (2013) Functions and mechanics of dynein motor proteins. Nat Rev Mol Cell Biol 14:713–726PubMedCentralPubMed Roberts AJ, Kon T, Knight PJ, Sutoh K, Burgess SA (2013) Functions and mechanics of dynein motor proteins. Nat Rev Mol Cell Biol 14:713–726PubMedCentralPubMed
92.
go back to reference Kopito RR (2000) Aggresomes, inclusion bodies and protein aggregation. Trends Cell Biol 10:524–530PubMed Kopito RR (2000) Aggresomes, inclusion bodies and protein aggregation. Trends Cell Biol 10:524–530PubMed
93.
go back to reference Garcia-Mata R, Bebok Z, Sorscher EJ, Sztul ES (1999) Characterization and dynamics of aggresome formation by a cytosolic gfp-chimera. J Cell Biol 146:1239–1254PubMedCentralPubMed Garcia-Mata R, Bebok Z, Sorscher EJ, Sztul ES (1999) Characterization and dynamics of aggresome formation by a cytosolic gfp-chimera. J Cell Biol 146:1239–1254PubMedCentralPubMed
94.
go back to reference Johnston JA, Ward CL, Kopito RR (1998) Aggresomes: a cellular response to misfolded proteins. J Cell Biol 143:1883–1898PubMedCentralPubMed Johnston JA, Ward CL, Kopito RR (1998) Aggresomes: a cellular response to misfolded proteins. J Cell Biol 143:1883–1898PubMedCentralPubMed
95.
go back to reference Martin SJ, Green DR (1995) Protease activation during apoptosis: death by a thousand cuts? Cell 82:349–352PubMed Martin SJ, Green DR (1995) Protease activation during apoptosis: death by a thousand cuts? Cell 82:349–352PubMed
96.
go back to reference Alnemri ES, Livingston DJ, Nicholson DW, Salvesen G, Thornberry NA, Wong WW, Yuan J (1996) Human ice/ced-3 protease nomenclature. Cell 87:171PubMed Alnemri ES, Livingston DJ, Nicholson DW, Salvesen G, Thornberry NA, Wong WW, Yuan J (1996) Human ice/ced-3 protease nomenclature. Cell 87:171PubMed
97.
go back to reference Thornberry NA, Lazebnik Y (1998) Caspases: enemies within. Science 281:1312–1316PubMed Thornberry NA, Lazebnik Y (1998) Caspases: enemies within. Science 281:1312–1316PubMed
98.
go back to reference Adams JM, Cory S (1998) The bcl-2 protein family: arbiters of cell survival. Science 281:1322–1326PubMed Adams JM, Cory S (1998) The bcl-2 protein family: arbiters of cell survival. Science 281:1322–1326PubMed
99.
go back to reference Chinnaiyan AM, Orth K, O’Rourke K, Duan H, Poirier GG, Dixit VM (1996) Molecular ordering of the cell death pathway. Bcl-2 and bcl-xl function upstream of the ced-3-like apoptotic proteases. J Biol Chem 271:4573–4576PubMed Chinnaiyan AM, Orth K, O’Rourke K, Duan H, Poirier GG, Dixit VM (1996) Molecular ordering of the cell death pathway. Bcl-2 and bcl-xl function upstream of the ced-3-like apoptotic proteases. J Biol Chem 271:4573–4576PubMed
100.
go back to reference Boulakia CA, Chen G, Ng FW, Teodoro JG, Branton PE, Nicholson DW, Poirier GG, Shore GC (1996) Bcl-2 and adenovirus e1b 19 kDa protein prevent e1a-induced processing of cpp32 and cleavage of poly(adp-ribose) polymerase. Oncogene 12:529–535PubMed Boulakia CA, Chen G, Ng FW, Teodoro JG, Branton PE, Nicholson DW, Poirier GG, Shore GC (1996) Bcl-2 and adenovirus e1b 19 kDa protein prevent e1a-induced processing of cpp32 and cleavage of poly(adp-ribose) polymerase. Oncogene 12:529–535PubMed
101.
go back to reference Shimizu S, Eguchi Y, Kamiike W, Matsuda H, Tsujimoto Y (1996) Bcl-2 expression prevents activation of the ice protease cascade. Oncogene 12:2251–2257PubMed Shimizu S, Eguchi Y, Kamiike W, Matsuda H, Tsujimoto Y (1996) Bcl-2 expression prevents activation of the ice protease cascade. Oncogene 12:2251–2257PubMed
102.
go back to reference Armstrong RC, Aja T, Xiang J, Gaur S, Krebs JF, Hoang K, Bai X, Korsmeyer SJ, Karanewsky DS, Fritz LC, Tomaselli KJ (1996) Fas-induced activation of the cell death-related protease cpp32 is inhibited by bcl-2 and by ice family protease inhibitors. J Biol Chem 271:16850–16855PubMed Armstrong RC, Aja T, Xiang J, Gaur S, Krebs JF, Hoang K, Bai X, Korsmeyer SJ, Karanewsky DS, Fritz LC, Tomaselli KJ (1996) Fas-induced activation of the cell death-related protease cpp32 is inhibited by bcl-2 and by ice family protease inhibitors. J Biol Chem 271:16850–16855PubMed
103.
go back to reference Chinnaiyan AM, O’Rourke K, Lane BR, Dixit VM (1997) Interaction of ced-4 with ced-3 and ced-9: a molecular framework for cell death. Science 275:1122–1126PubMed Chinnaiyan AM, O’Rourke K, Lane BR, Dixit VM (1997) Interaction of ced-4 with ced-3 and ced-9: a molecular framework for cell death. Science 275:1122–1126PubMed
104.
go back to reference Kluck RM, Bossy-Wetzel E, Green DR, Newmeyer DD (1997) The release of cytochrome c from mitochondria: a primary site for bcl-2 regulation of apoptosis. Science 275:1132–1136PubMed Kluck RM, Bossy-Wetzel E, Green DR, Newmeyer DD (1997) The release of cytochrome c from mitochondria: a primary site for bcl-2 regulation of apoptosis. Science 275:1132–1136PubMed
105.
go back to reference Ammirante M, Rosati A, Arra C, Basile A, Falco A, Festa M, Pascale M, d’Avenia M, Marzullo L, Belisario MA, De Marco M, Barbieri A, Giudice A, Chiappetta G, Vuttariello E, Monaco M, Bonelli P, Salvatore G, Di Benedetto M, Deshmane SL, Khalili K, Turco MC, Leone A (2010) Ikk{gamma} protein is a target of bag3 regulatory activity in human tumor growth. Proc Natl Acad Sci USA 107:7497–7502PubMedCentralPubMed Ammirante M, Rosati A, Arra C, Basile A, Falco A, Festa M, Pascale M, d’Avenia M, Marzullo L, Belisario MA, De Marco M, Barbieri A, Giudice A, Chiappetta G, Vuttariello E, Monaco M, Bonelli P, Salvatore G, Di Benedetto M, Deshmane SL, Khalili K, Turco MC, Leone A (2010) Ikk{gamma} protein is a target of bag3 regulatory activity in human tumor growth. Proc Natl Acad Sci USA 107:7497–7502PubMedCentralPubMed
106.
go back to reference Nivon M, Abou-Samra M, Richet E, Guyot B, Arrigo AP, Kretz-Remy C (2012) Nf-kappab regulates protein quality control after heat stress through modulation of the bag3-hspb8 complex. J Cell Sci 125:1141–1151PubMed Nivon M, Abou-Samra M, Richet E, Guyot B, Arrigo AP, Kretz-Remy C (2012) Nf-kappab regulates protein quality control after heat stress through modulation of the bag3-hspb8 complex. J Cell Sci 125:1141–1151PubMed
107.
go back to reference Falco A, Festa M, Basile A, Rosati A, Pascale M, Florenzano F, Nori SL, Nicolin V, Di Benedetto M, Vecchione ML, Arra C, Barbieri A, De Laurenzi V, Turco MC (2012) Bag3 controls angiogenesis through regulation of erk phosphorylation. Oncogene 31:5153–5161PubMed Falco A, Festa M, Basile A, Rosati A, Pascale M, Florenzano F, Nori SL, Nicolin V, Di Benedetto M, Vecchione ML, Arra C, Barbieri A, De Laurenzi V, Turco MC (2012) Bag3 controls angiogenesis through regulation of erk phosphorylation. Oncogene 31:5153–5161PubMed
108.
go back to reference Meng X, Kong DH, Li N, Zong ZH, Liu BQ, Du ZX, Guan Y, Cao L, Wang HQ (2014) Knockdown of bag3 induces epithelial-mesenchymal transition in thyroid cancer cells through zeb1 activation. Cell Death Dis 5:e1092PubMedCentralPubMed Meng X, Kong DH, Li N, Zong ZH, Liu BQ, Du ZX, Guan Y, Cao L, Wang HQ (2014) Knockdown of bag3 induces epithelial-mesenchymal transition in thyroid cancer cells through zeb1 activation. Cell Death Dis 5:e1092PubMedCentralPubMed
109.
go back to reference Colvin TA, Gabai VL, Gong J, Calderwood SK, Li H, Gummuluru S, Matchuk ON, Smirnova SG, Orlova NV, Zamulaeva IA, Garcia-Marcos M, Li X, Young ZT, Rauch JN, Gestwicki JE, Takayama S, Sherman MY (2014) Hsp70-bag3 interactions regulate cancer-related signaling networks. Cancer Res 74:4731–4740PubMed Colvin TA, Gabai VL, Gong J, Calderwood SK, Li H, Gummuluru S, Matchuk ON, Smirnova SG, Orlova NV, Zamulaeva IA, Garcia-Marcos M, Li X, Young ZT, Rauch JN, Gestwicki JE, Takayama S, Sherman MY (2014) Hsp70-bag3 interactions regulate cancer-related signaling networks. Cancer Res 74:4731–4740PubMed
110.
go back to reference Sugio A, Iwasaki M, Habata S, Mariya T, Suzuki M, Osogami H, Tamate M, Tanaka R, Saito T (2014) Bag3 upregulates mcl-1 through downregulation of mir-29b to induce anticancer drug resistance in ovarian cancer. Gynecol Oncol 134:615–623PubMed Sugio A, Iwasaki M, Habata S, Mariya T, Suzuki M, Osogami H, Tamate M, Tanaka R, Saito T (2014) Bag3 upregulates mcl-1 through downregulation of mir-29b to induce anticancer drug resistance in ovarian cancer. Gynecol Oncol 134:615–623PubMed
111.
go back to reference Selcen D, Engel AG (2011) Myofibrillar myopathies. Handb Clin Neurol 101:143–154PubMed Selcen D, Engel AG (2011) Myofibrillar myopathies. Handb Clin Neurol 101:143–154PubMed
112.
go back to reference Pappas CT, Krieg PA, Gregorio CC (2010) Nebulin regulates actin filament lengths by a stabilization mechanism. J Cell Biol 189:859–870PubMedCentralPubMed Pappas CT, Krieg PA, Gregorio CC (2010) Nebulin regulates actin filament lengths by a stabilization mechanism. J Cell Biol 189:859–870PubMedCentralPubMed
113.
go back to reference Pappas CT, Bhattacharya N, Cooper JA, Gregorio CC (2008) Nebulin interacts with capz and regulates thin filament architecture within the z-disc. Mol Biol Cell 19:1837–1847PubMedCentralPubMed Pappas CT, Bhattacharya N, Cooper JA, Gregorio CC (2008) Nebulin interacts with capz and regulates thin filament architecture within the z-disc. Mol Biol Cell 19:1837–1847PubMedCentralPubMed
114.
go back to reference Schafer DA, Hug C, Cooper JA (1995) Inhibition of capz during myofibrillogenesis alters assembly of actin filaments. J Cell Biol 128:61–70PubMed Schafer DA, Hug C, Cooper JA (1995) Inhibition of capz during myofibrillogenesis alters assembly of actin filaments. J Cell Biol 128:61–70PubMed
115.
go back to reference Knoll R, Hoshijima M, Hoffman HM, Person V, Lorenzen-Schmidt I, Bang ML, Hayashi T, Shiga N, Yasukawa H, Schaper W, McKenna W, Yokoyama M, Schork NJ, Omens JH, McCulloch AD, Kimura A, Gregorio CC, Poller W, Schaper J, Schultheiss HP, Chien KR (2002) The cardiac mechanical stretch sensor machinery involves a z disc complex that is defective in a subset of human dilated cardiomyopathy. Cell 111:943–955PubMed Knoll R, Hoshijima M, Hoffman HM, Person V, Lorenzen-Schmidt I, Bang ML, Hayashi T, Shiga N, Yasukawa H, Schaper W, McKenna W, Yokoyama M, Schork NJ, Omens JH, McCulloch AD, Kimura A, Gregorio CC, Poller W, Schaper J, Schultheiss HP, Chien KR (2002) The cardiac mechanical stretch sensor machinery involves a z disc complex that is defective in a subset of human dilated cardiomyopathy. Cell 111:943–955PubMed
116.
117.
go back to reference van der Ven PF, Schaart G, Croes HJ, Jap PH, Ginsel LA, Ramaekers FC (1993) Titin aggregates associated with intermediate filaments align along stress fiber-like structures during human skeletal muscle cell differentiation. J Cell Sci 106(Pt 3):749–759PubMed van der Ven PF, Schaart G, Croes HJ, Jap PH, Ginsel LA, Ramaekers FC (1993) Titin aggregates associated with intermediate filaments align along stress fiber-like structures during human skeletal muscle cell differentiation. J Cell Sci 106(Pt 3):749–759PubMed
118.
go back to reference McCollum AK, Casagrande G, Koch EC (2010) Caught in the middle: the role of Bag3 in disease. Biochem J 425:e1–e3 McCollum AK, Casagrande G, Koch EC (2010) Caught in the middle: the role of Bag3 in disease. Biochem J 425:e1–e3
119.
go back to reference Tilley DG, Zhu W, Myers VD, Barr LA, Gao E, Li X, Song J, Carter RL, Makarewich CA, Yu D, Troupes CD, Grisanti LA, Coleman RC, Koch WJ, Houser SR, Cheung JY, Feldman AM (2014) T1 β-adrenergic receptor-mediated cardiac contractility is inhibited via vasopressin type 1A-receptor-dependent signaling. Circulation 130(20):1800–1811PubMed Tilley DG, Zhu W, Myers VD, Barr LA, Gao E, Li X, Song J, Carter RL, Makarewich CA, Yu D, Troupes CD, Grisanti LA, Coleman RC, Koch WJ, Houser SR, Cheung JY, Feldman AM (2014) T1 β-adrenergic receptor-mediated cardiac contractility is inhibited via vasopressin type 1A-receptor-dependent signaling. Circulation 130(20):1800–1811PubMed
Metadata
Title
BAG3: a new player in the heart failure paradigm
Authors
Tijana Knezevic
Valerie D. Myers
Jennifer Gordon
Douglas G. Tilley
Thomas E. Sharp III
JuFang Wang
Kamel Khalili
Joseph Y. Cheung
Arthur M. Feldman
Publication date
01-07-2015
Publisher
Springer US
Published in
Heart Failure Reviews / Issue 4/2015
Print ISSN: 1382-4147
Electronic ISSN: 1573-7322
DOI
https://doi.org/10.1007/s10741-015-9487-6

Other articles of this Issue 4/2015

Heart Failure Reviews 4/2015 Go to the issue