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Published in: Basic Research in Cardiology 3/2017

01-05-2017 | Original Contribution

Cavin-1 deficiency modifies myocardial and coronary function, stretch responses and ischaemic tolerance: roles of NOS over-activity

Authors: Mika Kaakinen, Melissa E. Reichelt, Zhibin Ma, Charles Ferguson, Nick Martel, Enzo R. Porrello, James E. Hudson, Walter G. Thomas, Robert G. Parton, John P. Headrick

Published in: Basic Research in Cardiology | Issue 3/2017

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Abstract

Caveolae and associated cavin and caveolins may govern myocardial function, together with responses to mechanical and ischaemic stresses. Abnormalities in these proteins are also implicated in different cardiovascular disorders. However, specific roles of the cavin-1 protein in cardiac and coronary responses to mechanical/metabolic perturbation remain unclear. We characterised cardiovascular impacts of cavin-1 deficiency, comparing myocardial and coronary phenotypes and responses to stretch and ischaemia–reperfusion in hearts from cavin-1 +/+ and cavin-1 −/− mice. Caveolae and caveolins 1 and 3 were depleted in cavin-1 −/− hearts. Cardiac ejection properties in situ were modestly reduced in cavin-1 −/− mice. While peak contractile performance in ex vivo myocardium from cavin-1 −/− and cavin-1 +/+ mice was comparable, intrinsic beating rate, diastolic stiffness and Frank–Starling behaviour (stretch-dependent diastolic and systolic forces) were exaggerated in cavin-1 −/− hearts. Increases in stretch-dependent forces were countered by NOS inhibition (100 µM L-NAME), which exposed negative inotropy in cavin-1 −/− hearts, and were mimicked by 100 µM nitroprusside. In contrast, chronotropic differences appeared largely NOS-independent. Cavin-1 deletion also induced NOS-dependent coronary dilatation, ≥3-fold prolongation of reactive hyperaemic responses, and exaggerated pressure-dependence of coronary flow. Stretch-dependent efflux of lactate dehydrogenase and cardiac troponin I was increased and induction of brain natriuretic peptide and c-Fos inhibited in cavin-1 −/− hearts, while ERK1/2 phospho-activation was preserved. Post-ischaemic dysfunction and damage was also exaggerated in cavin-1 −/− hearts. Diverse effects of cavin-1 deletion reveal important roles in both NOS-dependent and -independent control of cardiac and coronary functions, together with governing sarcolemmal fragility and myocardial responses to stretch and ischaemia.
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Literature
2.
go back to reference Albinsson S, Shakirova Y, Rippe A, Baumgarten M, Rosengren BI, Rippe C, Hallmann R, Hellstrand P, Rippe B, Swärd K (2007) Arterial remodeling and plasma volume expansion in caveolin-1-deficient mice. Am J Physiol Regul Integr Comp Physiol 293:R1222–R1231. doi:10.1152/ajpregu.00092.2007 PubMedCrossRef Albinsson S, Shakirova Y, Rippe A, Baumgarten M, Rosengren BI, Rippe C, Hallmann R, Hellstrand P, Rippe B, Swärd K (2007) Arterial remodeling and plasma volume expansion in caveolin-1-deficient mice. Am J Physiol Regul Integr Comp Physiol 293:R1222–R1231. doi:10.​1152/​ajpregu.​00092.​2007 PubMedCrossRef
3.
go back to reference Angelone T, Quintieri AM, Pasqua T, Filice E, Cantafio P, Scavello F, Rocca C, Mahata SK, Gattuso A, Cerra MC (2015) The NO stimulator, Catestatin, improves the Frank–Starling response in normotensive and hypertensive rat hearts. Nitric Oxide 50:10–19. doi:10.1016/j.niox.2015.07.004 PubMedCrossRef Angelone T, Quintieri AM, Pasqua T, Filice E, Cantafio P, Scavello F, Rocca C, Mahata SK, Gattuso A, Cerra MC (2015) The NO stimulator, Catestatin, improves the Frank–Starling response in normotensive and hypertensive rat hearts. Nitric Oxide 50:10–19. doi:10.​1016/​j.​niox.​2015.​07.​004 PubMedCrossRef
5.
go back to reference Barouch LA, Harrison RW, Skaf MW, Rosas GO, Cappola TP, Kobeissi ZA, Hobai IA, Lemmon CA, Burnett AL, O’Rourke B, Rodriguez ER, Huang PL, Lima JA, Berkowitz DE, Hare JM (2002) Nitric oxide regulates the heart by spatial confinement of nitric oxide synthase isoforms. Nature 416:337–339. doi:10.1038/416005a PubMedCrossRef Barouch LA, Harrison RW, Skaf MW, Rosas GO, Cappola TP, Kobeissi ZA, Hobai IA, Lemmon CA, Burnett AL, O’Rourke B, Rodriguez ER, Huang PL, Lima JA, Berkowitz DE, Hare JM (2002) Nitric oxide regulates the heart by spatial confinement of nitric oxide synthase isoforms. Nature 416:337–339. doi:10.​1038/​416005a PubMedCrossRef
7.
go back to reference Bastiani M, Liu L, Hill MM, Jedrychowski MP, Nixon SJ, Lo HP, Abankwa D, Luetterforst R, Fernandez-Rojo M, Breen MR, Gygi SP, Vinten J, Walser PJ, North KN, Hancock JF, Pilch PF, Parton RG (2009) MURC/Cavin-4 and cavin family members form tissue-specific caveolar complexes. J Cell Biol 185:1259–1273. doi:10.1083/jcb.200903053 PubMedPubMedCentralCrossRef Bastiani M, Liu L, Hill MM, Jedrychowski MP, Nixon SJ, Lo HP, Abankwa D, Luetterforst R, Fernandez-Rojo M, Breen MR, Gygi SP, Vinten J, Walser PJ, North KN, Hancock JF, Pilch PF, Parton RG (2009) MURC/Cavin-4 and cavin family members form tissue-specific caveolar complexes. J Cell Biol 185:1259–1273. doi:10.​1083/​jcb.​200903053 PubMedPubMedCentralCrossRef
9.
go back to reference Bellott AC, Patel KC (1985) Burkholder TJ (2005) Reduction of caveolin-3 expression does not inhibit stretch-induced phosphorylation of ERK2 in skeletal muscle myotubes. J Appl Physiol 2005(98):1554–1561. doi:10.1152/japplphysiol.01070.2004 Bellott AC, Patel KC (1985) Burkholder TJ (2005) Reduction of caveolin-3 expression does not inhibit stretch-induced phosphorylation of ERK2 in skeletal muscle myotubes. J Appl Physiol 2005(98):1554–1561. doi:10.​1152/​japplphysiol.​01070.​2004
12.
go back to reference Brunner F, Maier R, Andrew P, Wölkart G, Zechner R, Mayer B (2003) Attenuation of myocardial ischemia/reperfusion injury in mice with myocyte-specific overexpression of endothelial nitric oxide synthase. Cardiovasc Res 57:55–62. doi:10.1016/S0008-6363(02)00649-1 PubMedCrossRef Brunner F, Maier R, Andrew P, Wölkart G, Zechner R, Mayer B (2003) Attenuation of myocardial ischemia/reperfusion injury in mice with myocyte-specific overexpression of endothelial nitric oxide synthase. Cardiovasc Res 57:55–62. doi:10.​1016/​S0008-6363(02)00649-1 PubMedCrossRef
15.
go back to reference Campbell DL, Stamler JS, Strauss HC (1996) Redox modulation of L-type calcium channels in ferret ventricular myocytes. Dual mechanism regulation by nitric oxide and S-nitrosothiols. J Gen Physiol 108:277–293. doi:10.1085/jgp.108.4.277 PubMedCrossRef Campbell DL, Stamler JS, Strauss HC (1996) Redox modulation of L-type calcium channels in ferret ventricular myocytes. Dual mechanism regulation by nitric oxide and S-nitrosothiols. J Gen Physiol 108:277–293. doi:10.​1085/​jgp.​108.​4.​277 PubMedCrossRef
17.
go back to reference Chen Z, Bakhshi FR, Shajahan AN, Sharma T, Mao M, Trane A, Bernatchez P, van Nieuw Amerongen GP, Bonini MG, Skidgel RA, Malik AB, Minshall RD (2012) Nitric oxide-dependent Src activation and resultant caveolin-1 phosphorylation promote eNOS/caveolin-1 binding and eNOS inhibition. Mol Biol Cell 23:1388–1398. doi:10.1091/mbc.E11-09-0811 PubMedPubMedCentralCrossRef Chen Z, Bakhshi FR, Shajahan AN, Sharma T, Mao M, Trane A, Bernatchez P, van Nieuw Amerongen GP, Bonini MG, Skidgel RA, Malik AB, Minshall RD (2012) Nitric oxide-dependent Src activation and resultant caveolin-1 phosphorylation promote eNOS/caveolin-1 binding and eNOS inhibition. Mol Biol Cell 23:1388–1398. doi:10.​1091/​mbc.​E11-09-0811 PubMedPubMedCentralCrossRef
18.
21.
go back to reference Cohen AW, Park DS, Woodman SE, Williams TM, Chandra M, Shirani J, Pereira de Souza A, Kitsis RN, Russell RG, Weiss LM, Tang B, Jelicks LA, Factor SM, Shtutin V, Tanowitz HB, Lisanti MP (2003) Caveolin-1 null mice develop cardiac hypertrophy with hyperactivation of p42/44 MAP kinase in cardiac fibroblasts. Am J Physiol Cell Physiol 284:C457–C474. doi:10.1152/ajpcell.00380.2002 PubMedCrossRef Cohen AW, Park DS, Woodman SE, Williams TM, Chandra M, Shirani J, Pereira de Souza A, Kitsis RN, Russell RG, Weiss LM, Tang B, Jelicks LA, Factor SM, Shtutin V, Tanowitz HB, Lisanti MP (2003) Caveolin-1 null mice develop cardiac hypertrophy with hyperactivation of p42/44 MAP kinase in cardiac fibroblasts. Am J Physiol Cell Physiol 284:C457–C474. doi:10.​1152/​ajpcell.​00380.​2002 PubMedCrossRef
23.
go back to reference Csonka C, Szilvássy Z, Fülöp F, Páli T, Blasig IE, Tosaki A, Schulz R, Ferdinandy P (1999) Classic preconditioning decreases the harmful accumulation of nitric oxide during ischemia and reperfusion in rat hearts. Circulation 100:2260–2266. doi:10.1161/01.CIR.100.22.2260 PubMedCrossRef Csonka C, Szilvássy Z, Fülöp F, Páli T, Blasig IE, Tosaki A, Schulz R, Ferdinandy P (1999) Classic preconditioning decreases the harmful accumulation of nitric oxide during ischemia and reperfusion in rat hearts. Circulation 100:2260–2266. doi:10.​1161/​01.​CIR.​100.​22.​2260 PubMedCrossRef
24.
go back to reference Cuong DV, Kim N, Youm JB, Joo H, Warda M, Lee JW, Park WS, Kim T, Kang S, Kim H, Han J (2006) Nitric oxide-cGMP-protein kinase G signaling pathway induces anoxic preconditioning through activation of ATP-sensitive K+ channels in rat hearts. Am J Physiol Heart Circ Physiol 290:H1808–H1817. doi:10.1152/ajpheart.00772.2005 PubMedCrossRef Cuong DV, Kim N, Youm JB, Joo H, Warda M, Lee JW, Park WS, Kim T, Kang S, Kim H, Han J (2006) Nitric oxide-cGMP-protein kinase G signaling pathway induces anoxic preconditioning through activation of ATP-sensitive K+ channels in rat hearts. Am J Physiol Heart Circ Physiol 290:H1808–H1817. doi:10.​1152/​ajpheart.​00772.​2005 PubMedCrossRef
25.
27.
go back to reference Depre C, Vanoverschelde JL, Goudemant JF, Mottet I, Hue L (1995) Protection against ischemic injury by nonvasoactive concentrations of nitric oxide synthase inhibitors in the perfused rabbit heart. Circulation 92:1911–1918. doi:10.1161/01.CIR.92.7.1911 PubMedCrossRef Depre C, Vanoverschelde JL, Goudemant JF, Mottet I, Hue L (1995) Protection against ischemic injury by nonvasoactive concentrations of nitric oxide synthase inhibitors in the perfused rabbit heart. Circulation 92:1911–1918. doi:10.​1161/​01.​CIR.​92.​7.​1911 PubMedCrossRef
28.
go back to reference Dick GM, Bratz IN, Borbouse L, Payne GA, Dincer UD, Knudson JD, Rogers PA, Tune JD (2008) Voltage-dependent K+ channels regulate the duration of reactive hyperemia in the canine coronary circulation. Am J Physiol Heart Circ Physiol 294:H2371–H2381. doi:10.1152/ajpheart.01279.2007 PubMedCrossRef Dick GM, Bratz IN, Borbouse L, Payne GA, Dincer UD, Knudson JD, Rogers PA, Tune JD (2008) Voltage-dependent K+ channels regulate the duration of reactive hyperemia in the canine coronary circulation. Am J Physiol Heart Circ Physiol 294:H2371–H2381. doi:10.​1152/​ajpheart.​01279.​2007 PubMedCrossRef
32.
go back to reference Feron O, Belhassen L, Kobzik L, Smith TW, Kelly RA, Michel T (1996) Endothelial nitric oxide synthase targeting to caveolae. Specific interactions with caveolin isoforms in cardiac myocytes and endothelial cells. J Biol Chem 271:22810–22814. doi:10.1074/jbc.271.37.22810 PubMedCrossRef Feron O, Belhassen L, Kobzik L, Smith TW, Kelly RA, Michel T (1996) Endothelial nitric oxide synthase targeting to caveolae. Specific interactions with caveolin isoforms in cardiac myocytes and endothelial cells. J Biol Chem 271:22810–22814. doi:10.​1074/​jbc.​271.​37.​22810 PubMedCrossRef
33.
go back to reference Feron O, Dessy C, Opel DJ, Arstall MA, Kelly RA, Michel T (1998) Modulation of the endothelial nitric-oxide synthase-caveolin interaction in cardiac myocytes. Implications for the autonomic regulation of heart rate. J Biol Chem 273:30249–30254. doi:10.1074/jbc.273.46.30249 PubMedCrossRef Feron O, Dessy C, Opel DJ, Arstall MA, Kelly RA, Michel T (1998) Modulation of the endothelial nitric-oxide synthase-caveolin interaction in cardiac myocytes. Implications for the autonomic regulation of heart rate. J Biol Chem 273:30249–30254. doi:10.​1074/​jbc.​273.​46.​30249 PubMedCrossRef
35.
go back to reference Gambin Y, Ariotti N, McMahon KA, Bastiani M, Sierecki E, Kovtun O, Polinkovsky ME, Magenau A, Jung W, Okano S, Zhou Y, Leneva N, Mureev S, Johnston W, Gaus K, Hancock JF, Collins BM, Alexandrov K, Parton RG (2013) Single-molecule analysis reveals self assembly and nanoscale segregation of two distinct cavin subcomplexes on caveolae. eLife 3:e01434. doi:10.7554/eLife.01434 PubMed Gambin Y, Ariotti N, McMahon KA, Bastiani M, Sierecki E, Kovtun O, Polinkovsky ME, Magenau A, Jung W, Okano S, Zhou Y, Leneva N, Mureev S, Johnston W, Gaus K, Hancock JF, Collins BM, Alexandrov K, Parton RG (2013) Single-molecule analysis reveals self assembly and nanoscale segregation of two distinct cavin subcomplexes on caveolae. eLife 3:e01434. doi:10.​7554/​eLife.​01434 PubMed
36.
go back to reference García-Cardeña G, Martasek P, Masters BS, Skidd PM, Couet J, Li S, Lisanti MP, Sessa WC (1997) Dissecting the interaction between nitric oxide synthase (NOS) and caveolin. Functional significance of the NOS caveolin binding domain in vivo. J Biol Chem 272:25437–25440. doi:10.1074/jbc.272.41.25437 PubMedCrossRef García-Cardeña G, Martasek P, Masters BS, Skidd PM, Couet J, Li S, Lisanti MP, Sessa WC (1997) Dissecting the interaction between nitric oxide synthase (NOS) and caveolin. Functional significance of the NOS caveolin binding domain in vivo. J Biol Chem 272:25437–25440. doi:10.​1074/​jbc.​272.​41.​25437 PubMedCrossRef
37.
go back to reference Glukhov AV, Balycheva M, Sanchez-Alonso JL, Ilkan Z, Alvarez-Laviada A, Bhogal N, Diakonov I, Schobesberger S, Sikkel MB, Bhargava A, Faggian G, Punjabi PP, Houser SR, Gorelik J (2015) Direct evidence for microdomain-specific localization and remodeling of functional l-type calcium channels in rat and human atrial myocytes. Circulation 132:2372–2384. doi:10.1161/CIRCULATIONAHA.115.018131 PubMedPubMedCentralCrossRef Glukhov AV, Balycheva M, Sanchez-Alonso JL, Ilkan Z, Alvarez-Laviada A, Bhogal N, Diakonov I, Schobesberger S, Sikkel MB, Bhargava A, Faggian G, Punjabi PP, Houser SR, Gorelik J (2015) Direct evidence for microdomain-specific localization and remodeling of functional l-type calcium channels in rat and human atrial myocytes. Circulation 132:2372–2384. doi:10.​1161/​CIRCULATIONAHA.​115.​018131 PubMedPubMedCentralCrossRef
42.
go back to reference Hayashi T, Arimura T, Ueda K, Shibata H, Hohda S, Takahashi M, Hori H, Koga Y, Oka N, Imaizumi T, Yasunami M, Kimura A (2004) Identification and functional analysis of a caveolin-3 mutation associated with familial hypertrophic cardiomyopathy. Biochem Biophys Res Commun 313:178–184. doi:10.1016/j.bbrc.2003.11.101 PubMedCrossRef Hayashi T, Arimura T, Ueda K, Shibata H, Hohda S, Takahashi M, Hori H, Koga Y, Oka N, Imaizumi T, Yasunami M, Kimura A (2004) Identification and functional analysis of a caveolin-3 mutation associated with familial hypertrophic cardiomyopathy. Biochem Biophys Res Commun 313:178–184. doi:10.​1016/​j.​bbrc.​2003.​11.​101 PubMedCrossRef
43.
go back to reference Hayashi YK, Matsuda C, Ogawa M, Goto K, Tominaga K, Mitsuhashi S, Park YE, Nonaka I, Hino-Fukuyo N, Haginoya K, Sugano H, Nishino I (2009) Human PTRF mutations cause secondary deficiency of caveolins resulting in muscular dystrophy with generalized lipodystrophy. J Clin Invest 119:2623–2633. doi:10.1172/Jci38660 PubMedPubMedCentralCrossRef Hayashi YK, Matsuda C, Ogawa M, Goto K, Tominaga K, Mitsuhashi S, Park YE, Nonaka I, Hino-Fukuyo N, Haginoya K, Sugano H, Nishino I (2009) Human PTRF mutations cause secondary deficiency of caveolins resulting in muscular dystrophy with generalized lipodystrophy. J Clin Invest 119:2623–2633. doi:10.​1172/​Jci38660 PubMedPubMedCentralCrossRef
44.
go back to reference Heinzel FR, Gres P, Boengler K, Duschin A, Konietzka I, Rassaf T, Snedovskaya J, Meyer S, Skyschally A, Kelm M, Heusch G, Schulz R (2008) Inducible nitric oxide synthase expression and cardiomyocyte dysfunction during sustained moderate ischemia in pigs. Circ Res 103:1120–1127. doi:10.1161/CIRCRESAHA.108.186015 PubMedCrossRef Heinzel FR, Gres P, Boengler K, Duschin A, Konietzka I, Rassaf T, Snedovskaya J, Meyer S, Skyschally A, Kelm M, Heusch G, Schulz R (2008) Inducible nitric oxide synthase expression and cardiomyocyte dysfunction during sustained moderate ischemia in pigs. Circ Res 103:1120–1127. doi:10.​1161/​CIRCRESAHA.​108.​186015 PubMedCrossRef
45.
go back to reference Heusch G, Post H, Michel MC, Kelm M, Schulz R (2000) Endogenous nitric oxide and myocardial adaptation to ischemia. Circ Res 87:146–152 PMID: 10903999 PubMedCrossRef Heusch G, Post H, Michel MC, Kelm M, Schulz R (2000) Endogenous nitric oxide and myocardial adaptation to ischemia. Circ Res 87:146–152 PMID: 10903999 PubMedCrossRef
47.
go back to reference Horikawa YT, Patel HH, Tsutsumi YM, Jennings MM, Kidd MW, Hagiwara Y, Ishikawa Y, Insel PA, Roth DM (2008) Caveolin-3 expression and caveolae are required for isoflurane-induced cardiac protection from hypoxia and ischemia/reperfusion injury. J Mol Cell Cardiol 44:123–130. doi:10.1016/j.yjmcc.2007.10.003 PubMedCrossRef Horikawa YT, Patel HH, Tsutsumi YM, Jennings MM, Kidd MW, Hagiwara Y, Ishikawa Y, Insel PA, Roth DM (2008) Caveolin-3 expression and caveolae are required for isoflurane-induced cardiac protection from hypoxia and ischemia/reperfusion injury. J Mol Cell Cardiol 44:123–130. doi:10.​1016/​j.​yjmcc.​2007.​10.​003 PubMedCrossRef
48.
go back to reference Hu A, Jiao X, Gao E, Koch WJ, Sharifi-Azad S, Grunwald Z, Ma XL, Sun JZ (2006) Chronic beta-adrenergic receptor stimulation induces cardiac apoptosis and aggravates myocardial ischemia/reperfusion injury by provoking inducible nitric-oxide synthase-mediated nitrative stress. J Pharmacol Exp Ther 318:469–475. doi:10.1124/jpet.106.102160 PubMedCrossRef Hu A, Jiao X, Gao E, Koch WJ, Sharifi-Azad S, Grunwald Z, Ma XL, Sun JZ (2006) Chronic beta-adrenergic receptor stimulation induces cardiac apoptosis and aggravates myocardial ischemia/reperfusion injury by provoking inducible nitric-oxide synthase-mediated nitrative stress. J Pharmacol Exp Ther 318:469–475. doi:10.​1124/​jpet.​106.​102160 PubMedCrossRef
49.
go back to reference Israeli-Rosenberg S, Chen C, Li R, Deussen DN, Niesman IR, Okada H, Patel HH, Roth DM, Ross RS (2015) Caveolin modulates integrin function and mechanical activation in the cardiomyocyte. FASEB J 29:374–384. doi:10.1096/fj.13-243139 PubMedCrossRef Israeli-Rosenberg S, Chen C, Li R, Deussen DN, Niesman IR, Okada H, Patel HH, Roth DM, Ross RS (2015) Caveolin modulates integrin function and mechanical activation in the cardiomyocyte. FASEB J 29:374–384. doi:10.​1096/​fj.​13-243139 PubMedCrossRef
51.
53.
go back to reference Kingma I, Smiseth OA, Belenkie I, Knudtson ML, MacDonald RP, Tyberg JV, Smith ER (1986) A mechanism for the nitroglycerin-induced downward shift of the left ventricular diastolic pressure–diameter relationship of patients. Am J Cardiol 57:673–677. doi:10.1016/0002-9149(86)90857-X PubMedCrossRef Kingma I, Smiseth OA, Belenkie I, Knudtson ML, MacDonald RP, Tyberg JV, Smith ER (1986) A mechanism for the nitroglycerin-induced downward shift of the left ventricular diastolic pressure–diameter relationship of patients. Am J Cardiol 57:673–677. doi:10.​1016/​0002-9149(86)90857-X PubMedCrossRef
54.
go back to reference Kinugawa K, Takahashi T, Kohmoto O, Yao A, Aoyagi T, Momomura S, Hirata Y, Serizawa T (1994) Nitric oxide-mediated effects of interleukin-6 on [Ca2+]i and cell contraction in cultured chick ventricular myocytes. Circ Res 75:285–295. doi:10.1161/01.RES.75.2.285 PubMedCrossRef Kinugawa K, Takahashi T, Kohmoto O, Yao A, Aoyagi T, Momomura S, Hirata Y, Serizawa T (1994) Nitric oxide-mediated effects of interleukin-6 on [Ca2+]i and cell contraction in cultured chick ventricular myocytes. Circ Res 75:285–295. doi:10.​1161/​01.​RES.​75.​2.​285 PubMedCrossRef
56.
go back to reference Kovtun O, Tillu VA, Jung W, Leneva N, Ariotti N, Chaudhary N, Mandyam RA, Ferguson C, Morgan GP, Johnston WA, Harrop SJ, Alexandrov K, Parton RG, Collins BM (2014) Structural insights into the organization of the cavin membrane coat complex. Dev Cell 31:405–419. doi:10.1016/j.devcel.2014.10.002 PubMedCrossRef Kovtun O, Tillu VA, Jung W, Leneva N, Ariotti N, Chaudhary N, Mandyam RA, Ferguson C, Morgan GP, Johnston WA, Harrop SJ, Alexandrov K, Parton RG, Collins BM (2014) Structural insights into the organization of the cavin membrane coat complex. Dev Cell 31:405–419. doi:10.​1016/​j.​devcel.​2014.​10.​002 PubMedCrossRef
58.
go back to reference Lo HP, Nixon SJ, Hall TE, Cowling BS, Ferguson C, Morgan GP, Schieber NL, Fernandez-Rojo MA, Bastiani M, Floetenmeyer M, Martel N, Laporte J, Pilch PF, Parton RG (2015) The caveolin-cavin system plays a conserved and critical role in mechanoprotection of skeletal muscle. J Cell Biol 210:833–849. doi:10.1083/jcb.201501046 PubMedPubMedCentralCrossRef Lo HP, Nixon SJ, Hall TE, Cowling BS, Ferguson C, Morgan GP, Schieber NL, Fernandez-Rojo MA, Bastiani M, Floetenmeyer M, Martel N, Laporte J, Pilch PF, Parton RG (2015) The caveolin-cavin system plays a conserved and critical role in mechanoprotection of skeletal muscle. J Cell Biol 210:833–849. doi:10.​1083/​jcb.​201501046 PubMedPubMedCentralCrossRef
59.
go back to reference Lu XM, Zhang GX, Yu YQ, Kimura S, Nishiyama A, Matsuyoshi H, Shimizu J, Takaki M (2009) The opposite roles of nNOS in cardiac ischemia-reperfusion-induced injury and in ischemia preconditioning-induced cardioprotection in mice. J Physiol Sci 59:253–262. doi:10.1007/s12576-009-0030-1 PubMedCrossRef Lu XM, Zhang GX, Yu YQ, Kimura S, Nishiyama A, Matsuyoshi H, Shimizu J, Takaki M (2009) The opposite roles of nNOS in cardiac ischemia-reperfusion-induced injury and in ischemia preconditioning-induced cardioprotection in mice. J Physiol Sci 59:253–262. doi:10.​1007/​s12576-009-0030-1 PubMedCrossRef
62.
go back to reference Martin C, Schulz R, Post H, Boengler K, Kelm M, Kleinbongard P, Gres P, Skyschally A, Konietzka I, Heusch G (2007) Microdialysis-based analysis of interstitial NO in situ: NO synthase-independent NO formation during myocardial ischemia. Cardiovasc Res 74:46–55. doi:10.1016/j.cardiores.2006.12.020 PubMedCrossRef Martin C, Schulz R, Post H, Boengler K, Kelm M, Kleinbongard P, Gres P, Skyschally A, Konietzka I, Heusch G (2007) Microdialysis-based analysis of interstitial NO in situ: NO synthase-independent NO formation during myocardial ischemia. Cardiovasc Res 74:46–55. doi:10.​1016/​j.​cardiores.​2006.​12.​020 PubMedCrossRef
63.
go back to reference Matheis G, Sherman MP, Buckberg GD, Haybron DM, Young HH, Ignarro LJ (1992) Role of l-arginine-nitric oxide pathway in myocardial reoxygenation injury. Am J Physiol 262:H616–H620 PMID: 1539723 PubMed Matheis G, Sherman MP, Buckberg GD, Haybron DM, Young HH, Ignarro LJ (1992) Role of l-arginine-nitric oxide pathway in myocardial reoxygenation injury. Am J Physiol 262:H616–H620 PMID: 1539723 PubMed
64.
go back to reference Merx MW, Gorressen S, van de Sandt AM, Cortese-Krott MM, Ohlig J, Stern M, Rassaf T, Gödecke A, Gladwin MT, Kelm M (2014) Depletion of circulating blood NOS3 increases severity of myocardial infarction and left ventricular dysfunction. Basic Res Cardiol 109:398. doi:10.1007/s00395-013-0398-1 PubMedCrossRef Merx MW, Gorressen S, van de Sandt AM, Cortese-Krott MM, Ohlig J, Stern M, Rassaf T, Gödecke A, Gladwin MT, Kelm M (2014) Depletion of circulating blood NOS3 increases severity of myocardial infarction and left ventricular dysfunction. Basic Res Cardiol 109:398. doi:10.​1007/​s00395-013-0398-1 PubMedCrossRef
67.
go back to reference Ohsawa Y, Toko H, Katsura M, Morimoto K, Yamada H, Ichikawa Y, Murakami T, Ohkuma S, Komuro I, Sunada Y (2004) Overexpression of P104L mutant caveolin-3 in mice develops hypertrophic cardiomyopathy with enhanced contractility in association with increased endothelial nitric oxide synthase activity. Hum Mol Genet 13:151–157. doi:10.1093/hmg/ddh014 PubMedCrossRef Ohsawa Y, Toko H, Katsura M, Morimoto K, Yamada H, Ichikawa Y, Murakami T, Ohkuma S, Komuro I, Sunada Y (2004) Overexpression of P104L mutant caveolin-3 in mice develops hypertrophic cardiomyopathy with enhanced contractility in association with increased endothelial nitric oxide synthase activity. Hum Mol Genet 13:151–157. doi:10.​1093/​hmg/​ddh014 PubMedCrossRef
69.
go back to reference Patel HH, Tsutsumi YM, Head BP, Niesman IR, Jennings M, Horikawa Y, Huang D, Moreno AL, Patel PM, Insel PA, Roth DM (2007) Mechanisms of cardiac protection from ischemia/reperfusion injury: a role for caveolae and caveolin-1. FASEB J 21:1565–1574. doi:10.1096/fj.06-7719com PubMedCrossRef Patel HH, Tsutsumi YM, Head BP, Niesman IR, Jennings M, Horikawa Y, Huang D, Moreno AL, Patel PM, Insel PA, Roth DM (2007) Mechanisms of cardiac protection from ischemia/reperfusion injury: a role for caveolae and caveolin-1. FASEB J 21:1565–1574. doi:10.​1096/​fj.​06-7719com PubMedCrossRef
74.
go back to reference Post H, Schulz R, Gres P, Heusch G (2001) No involvement of nitric oxide in the limitation of beta-adrenergic inotropic responsiveness during ischemia. Am J Physiol Heart Circ Physiol 281:H2392–H2397PubMed Post H, Schulz R, Gres P, Heusch G (2001) No involvement of nitric oxide in the limitation of beta-adrenergic inotropic responsiveness during ischemia. Am J Physiol Heart Circ Physiol 281:H2392–H2397PubMed
76.
go back to reference Puybasset L, Béa ML, Ghaleh B, Giudicelli JF, Berdeaux A (1996) Coronary and systemic hemodynamic effects of sustained inhibition of nitric oxide synthesis in conscious dogs. Evidence for cross talk between nitric oxide and cyclooxygenase in coronary vessels. Circ Res 79:343–357. doi:10.1161/01.RES.79.2.343 PubMedCrossRef Puybasset L, Béa ML, Ghaleh B, Giudicelli JF, Berdeaux A (1996) Coronary and systemic hemodynamic effects of sustained inhibition of nitric oxide synthesis in conscious dogs. Evidence for cross talk between nitric oxide and cyclooxygenase in coronary vessels. Circ Res 79:343–357. doi:10.​1161/​01.​RES.​79.​2.​343 PubMedCrossRef
77.
go back to reference Rajab A, Straub V, McCann LJ, Seelow D, Varon R, Barresi R, Schulze A, Lucke B, Lützkendorf S, Karbasiyan M, Bachmann S, Spuler S, Schuelke M (2010) Fatal cardiac arrhythmia and long-QT syndrome in a new form of congenital generalized lipodystrophy with muscle rippling (CGL4) due to PTRF-CAVIN mutations. PLoS Genet 6:e1000874. doi:10.1371/journal.pgen.1000874 PubMedPubMedCentralCrossRef Rajab A, Straub V, McCann LJ, Seelow D, Varon R, Barresi R, Schulze A, Lucke B, Lützkendorf S, Karbasiyan M, Bachmann S, Spuler S, Schuelke M (2010) Fatal cardiac arrhythmia and long-QT syndrome in a new form of congenital generalized lipodystrophy with muscle rippling (CGL4) due to PTRF-CAVIN mutations. PLoS Genet 6:e1000874. doi:10.​1371/​journal.​pgen.​1000874 PubMedPubMedCentralCrossRef
78.
go back to reference Rassaf T, Kleinbongard P, Preik M, Dejam A, Gharini P, Lauer T, Erckenbrecht J, Duschin A, Schulz R, Heusch G, Feelisch M, Kelm M (2002) Plasma nitrosothiols contribute to the systemic vasodilator effects of intravenously applied NO: experimental and clinical Study on the fate of NO in human blood. Circ Res 91:470–477 PMID: 12242264 PubMedCrossRef Rassaf T, Kleinbongard P, Preik M, Dejam A, Gharini P, Lauer T, Erckenbrecht J, Duschin A, Schulz R, Heusch G, Feelisch M, Kelm M (2002) Plasma nitrosothiols contribute to the systemic vasodilator effects of intravenously applied NO: experimental and clinical Study on the fate of NO in human blood. Circ Res 91:470–477 PMID: 12242264 PubMedCrossRef
80.
go back to reference Razani B, Engelman JA, Wang XB, Schubert W, Zhang XL, Marks CB, Macaluso F, Russell RG, Li M, Pestell RG, Di Vizio D, Hou H Jr, Kneitz B, Lagaud G, Christ GJ, Edelmann W, Lisanti MP (2001) Caveolin-1 null mice are viable but show evidence of hyperproliferative and vascular abnormalities. J Biol Chem 276:38121–38138. doi:10.1074/jbc.M105408200 PubMedCrossRef Razani B, Engelman JA, Wang XB, Schubert W, Zhang XL, Marks CB, Macaluso F, Russell RG, Li M, Pestell RG, Di Vizio D, Hou H Jr, Kneitz B, Lagaud G, Christ GJ, Edelmann W, Lisanti MP (2001) Caveolin-1 null mice are viable but show evidence of hyperproliferative and vascular abnormalities. J Biol Chem 276:38121–38138. doi:10.​1074/​jbc.​M105408200 PubMedCrossRef
82.
go back to reference Rizzo V, McIntosh DP, Oh P, Schnitzer JE (1998) In situ flow activates endothelial nitric oxide synthase in luminal caveolae of endothelium with rapid caveolin dissociation and calmodulin association. J Biol Chem 273:34724–34729. doi:10.1074/jbc.273.52.34724 PubMedCrossRef Rizzo V, McIntosh DP, Oh P, Schnitzer JE (1998) In situ flow activates endothelial nitric oxide synthase in luminal caveolae of endothelium with rapid caveolin dissociation and calmodulin association. J Biol Chem 273:34724–34729. doi:10.​1074/​jbc.​273.​52.​34724 PubMedCrossRef
83.
go back to reference Rodriguez G, Ueyama T, Ogata T, Czernuszewicz G, Tan Y, Dorn GW 2nd, Bogaev R, Amano K, Oh H, Matsubara H, Willerson JT, Marian AJ (2011) Molecular genetic and functional characterization implicate muscle-restricted coiled-coil gene (MURC) as a causal gene for familial dilated cardiomyopathy. Circ Cardiovasc Genet 4:349–358. doi:10.1161/CIRCGENETICS.111.959866 PubMedPubMedCentralCrossRef Rodriguez G, Ueyama T, Ogata T, Czernuszewicz G, Tan Y, Dorn GW 2nd, Bogaev R, Amano K, Oh H, Matsubara H, Willerson JT, Marian AJ (2011) Molecular genetic and functional characterization implicate muscle-restricted coiled-coil gene (MURC) as a causal gene for familial dilated cardiomyopathy. Circ Cardiovasc Genet 4:349–358. doi:10.​1161/​CIRCGENETICS.​111.​959866 PubMedPubMedCentralCrossRef
88.
go back to reference See Hoe LE, Schilling JM, Tarbit E, Kiessling CJ, Busija AR, Niesman IR, Du Toit E, Ashton KJ, Roth DM, Headrick JP, Patel HH, Peart JN (2014) Sarcolemmal cholesterol and caveolin-3 dependence of cardiac function, ischemic tolerance, and opioidergic cardioprotection. Am J Physiol Heart Circ Physiol 307:H895–H903. doi:10.1152/ajpheart.00081.2014 PubMedPubMedCentralCrossRef See Hoe LE, Schilling JM, Tarbit E, Kiessling CJ, Busija AR, Niesman IR, Du Toit E, Ashton KJ, Roth DM, Headrick JP, Patel HH, Peart JN (2014) Sarcolemmal cholesterol and caveolin-3 dependence of cardiac function, ischemic tolerance, and opioidergic cardioprotection. Am J Physiol Heart Circ Physiol 307:H895–H903. doi:10.​1152/​ajpheart.​00081.​2014 PubMedPubMedCentralCrossRef
89.
90.
93.
go back to reference Takasato M, Er PX, Chiu HS, Maier B, Baillie GJ, Ferguson C, Parton RG, Wolvetang EJ, Roost MS, de Sousa Chuva, Lopes SM, Little MH (2015) Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis. Nature 526:564–568. doi:10.1038/nature15695 PubMedCrossRef Takasato M, Er PX, Chiu HS, Maier B, Baillie GJ, Ferguson C, Parton RG, Wolvetang EJ, Roost MS, de Sousa Chuva, Lopes SM, Little MH (2015) Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis. Nature 526:564–568. doi:10.​1038/​nature15695 PubMedCrossRef
95.
go back to reference Tsutsumi YM, Horikawa YT, Jennings MM, Kidd MW, Niesman IR, Yokoyama U, Head BP, Hagiwara Y, Ishikawa Y, Miyanohara A, Patel PM, Insel PA, Patel HH, Roth DM (2008) Cardiac- specific overexpression of caveolin-3 induces endogenous cardiac protection by mimicking ischemic preconditioning. Circulation 118:1979–1988. doi:10.1161/CIRCULATIONAHA.108.788331 PubMedPubMedCentralCrossRef Tsutsumi YM, Horikawa YT, Jennings MM, Kidd MW, Niesman IR, Yokoyama U, Head BP, Hagiwara Y, Ishikawa Y, Miyanohara A, Patel PM, Insel PA, Patel HH, Roth DM (2008) Cardiac- specific overexpression of caveolin-3 induces endogenous cardiac protection by mimicking ischemic preconditioning. Circulation 118:1979–1988. doi:10.​1161/​CIRCULATIONAHA.​108.​788331 PubMedPubMedCentralCrossRef
98.
go back to reference Vatta M, Ackerman MJ, Ye B, Makielski JC, Ughanze EE, Taylor EW, Tester DJ, Balijepalli RC, Foell JD, Li Z, Kamp TJ, Towbin JA (2006) Mutant caveolin-3 induces persistent late sodium current and is associated with long-QT syndrome. Circulation 114:2104–2112. doi:10.1161/CIRCULATIONAHA.106.635268 PubMedCrossRef Vatta M, Ackerman MJ, Ye B, Makielski JC, Ughanze EE, Taylor EW, Tester DJ, Balijepalli RC, Foell JD, Li Z, Kamp TJ, Towbin JA (2006) Mutant caveolin-3 induces persistent late sodium current and is associated with long-QT syndrome. Circulation 114:2104–2112. doi:10.​1161/​CIRCULATIONAHA.​106.​635268 PubMedCrossRef
99.
go back to reference Vila-Petroff MG, Kim SH, Pepe S, Dessy C, Marban E, Balligand JL, Sollott SJ (2001) Endogenous nitric oxide mechanisms mediate the stretch dependence of Ca2+ release in cardiomyocytes. Nat Cell Biol 3:867–873. doi:10.1038/ncb1001-867 CrossRef Vila-Petroff MG, Kim SH, Pepe S, Dessy C, Marban E, Balligand JL, Sollott SJ (2001) Endogenous nitric oxide mechanisms mediate the stretch dependence of Ca2+ release in cardiomyocytes. Nat Cell Biol 3:867–873. doi:10.​1038/​ncb1001-867 CrossRef
101.
go back to reference Walsh EK, Huang H, Wang Z, Williams J, de Crom R, van Haperen R, Thompson CI, Lefer DJ, Hintze TH (2004) Control of myocardial oxygen consumption in transgenic mice overexpressing vascular eNOS. Am J Physiol Heart Circ Physiol 287:H2115–H2121. doi:10.1152/ajpheart.00267.2004 PubMedCrossRef Walsh EK, Huang H, Wang Z, Williams J, de Crom R, van Haperen R, Thompson CI, Lefer DJ, Hintze TH (2004) Control of myocardial oxygen consumption in transgenic mice overexpressing vascular eNOS. Am J Physiol Heart Circ Physiol 287:H2115–H2121. doi:10.​1152/​ajpheart.​00267.​2004 PubMedCrossRef
107.
go back to reference Woodman SE, Park DS, Cohen AW, Cheung MW, Chandra M, Shirani J, Tang B, Jelicks LA, Kitsis RN, Christ GJ, Factor SM, Tanowitz HB, Lisanti MP (2002) Caveolin-3 knock-out mice develop a progressive cardiomyopathy and show hyperactivation of the p42/44 MAPK cascade. J Biol Chem 277:38988–38997. doi:10.1074/jbc.M205511200 PubMedCrossRef Woodman SE, Park DS, Cohen AW, Cheung MW, Chandra M, Shirani J, Tang B, Jelicks LA, Kitsis RN, Christ GJ, Factor SM, Tanowitz HB, Lisanti MP (2002) Caveolin-3 knock-out mice develop a progressive cardiomyopathy and show hyperactivation of the p42/44 MAPK cascade. J Biol Chem 277:38988–38997. doi:10.​1074/​jbc.​M205511200 PubMedCrossRef
108.
go back to reference Wunderlich C, Schober K, Kasper M, Heerwagen C, Marquetant R, Ebner B, Forkmann M, Schoen S, Braun-Dullaeus RC, Schmeisser A, Strasser RH (2008) Nitric oxide synthases are crucially involved in the development of the severe cardiomyopathy of caveolin-1 knockout mice. Biochem Biophys Res Commun 377:769–774. doi:10.1016/j.bbrc.2008.10.068 PubMedCrossRef Wunderlich C, Schober K, Kasper M, Heerwagen C, Marquetant R, Ebner B, Forkmann M, Schoen S, Braun-Dullaeus RC, Schmeisser A, Strasser RH (2008) Nitric oxide synthases are crucially involved in the development of the severe cardiomyopathy of caveolin-1 knockout mice. Biochem Biophys Res Commun 377:769–774. doi:10.​1016/​j.​bbrc.​2008.​10.​068 PubMedCrossRef
112.
go back to reference Yu J, Bergaya S, Murata T, Alp IF, Bauer MP, Lin MI, Drab M, Kurzchalia TV, Stan RV, Sessa WC (2006) Direct evidence for the role of caveolin-1 and caveolae in mechanotransduction and remodeling of blood vessels. J Clin Invest 116:1284–1291. doi:10.1172/JCI27100 PubMedPubMedCentralCrossRef Yu J, Bergaya S, Murata T, Alp IF, Bauer MP, Lin MI, Drab M, Kurzchalia TV, Stan RV, Sessa WC (2006) Direct evidence for the role of caveolin-1 and caveolae in mechanotransduction and remodeling of blood vessels. J Clin Invest 116:1284–1291. doi:10.​1172/​JCI27100 PubMedPubMedCentralCrossRef
115.
go back to reference Zhao X, Chen YR, He G, Zhang A, Druhan LJ, Strauch AR, Zweier JL (2007) Endothelial nitric oxide synthase (NOS3) knockout decreases NOS2 induction, limiting hyperoxygenation and conferring protection in the postischemic heart. Am J Physiol Heart Circ Physiol 292:H1541–H1550. doi:10.1152/ajpheart.00264.2006 PubMedCrossRef Zhao X, Chen YR, He G, Zhang A, Druhan LJ, Strauch AR, Zweier JL (2007) Endothelial nitric oxide synthase (NOS3) knockout decreases NOS2 induction, limiting hyperoxygenation and conferring protection in the postischemic heart. Am J Physiol Heart Circ Physiol 292:H1541–H1550. doi:10.​1152/​ajpheart.​00264.​2006 PubMedCrossRef
116.
go back to reference Zhou L, Burnett AL, Huang PL, Becker LC, Kuppusamy P, Kass DA, Kevin Donahue J, Proud D, Sham JS, Dawson TM, Xu KY (2002) Lack of nitric oxide synthase depresses ion transporting enzyme function in cardiac muscle. Biochem Biophys Res Commun 294:1030–1035. doi:10.1016/S0006-291X(02)00599-5 PubMedCrossRef Zhou L, Burnett AL, Huang PL, Becker LC, Kuppusamy P, Kass DA, Kevin Donahue J, Proud D, Sham JS, Dawson TM, Xu KY (2002) Lack of nitric oxide synthase depresses ion transporting enzyme function in cardiac muscle. Biochem Biophys Res Commun 294:1030–1035. doi:10.​1016/​S0006-291X(02)00599-5 PubMedCrossRef
Metadata
Title
Cavin-1 deficiency modifies myocardial and coronary function, stretch responses and ischaemic tolerance: roles of NOS over-activity
Authors
Mika Kaakinen
Melissa E. Reichelt
Zhibin Ma
Charles Ferguson
Nick Martel
Enzo R. Porrello
James E. Hudson
Walter G. Thomas
Robert G. Parton
John P. Headrick
Publication date
01-05-2017
Publisher
Springer Berlin Heidelberg
Published in
Basic Research in Cardiology / Issue 3/2017
Print ISSN: 0300-8428
Electronic ISSN: 1435-1803
DOI
https://doi.org/10.1007/s00395-017-0613-6

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