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Published in: Calcified Tissue International 6/2005

01-06-2005

Different Cysteine Proteinases Involved in Bone Resorption and Osteoclast Formation

Authors: M. Brage, M. Abrahamson, V. Lindström, A. Grubb, U. H. Lerner

Published in: Calcified Tissue International | Issue 6/2005

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Abstract

Cysteine proteinases, especially cathepsin K, play an important role in osteoclastic degradation of bone matrix proteins and the process can, consequently, be significantly inhibited by cysteine proteinase inhibitors. We have recently reported that cystatin C and other cysteine proteinase inhibitors also reduce osteoclast formation. However, it is not known which cysteine proteinase(s) are involved in osteoclast differentiation. In the present study, we compared the relative potencies of cystatins C and D as inhibitors of bone resorption in cultured mouse calvariae, osteoclastogenesis in mouse bone marrow cultures, and cathepsin K activity. Inhibition of cathepsin K activity was assessed by determining equilibrium constants for inhibitor complexes in fluorogenic substrate assays. The data demonstrate that whereas human cystatins C and D are equipotent as inhibitors of bone resorption, cystatin D is 10-fold less potent as an inhibitor of osteoclastogenesis and 200-fold less potent as an inhibitor of cathepsin K activity. A recombinant human cystatin C variant with Gly substitutions for residues Arg8, Leu9, Val10, and Trp106 did not inhibit bone resorption, had 1,000-fold decreased inhibitory effect on cathepsin K activity compared to wildtype cystatin C, but was equipotent with wildtype cystatin C as an inhibitor of osteoclastogenesis. It is concluded that (i) different cysteine proteinases are likely to be involved in bone resorption and osteoclast formation, (ii) cathepsin K may not be an exclusive target enzyme in any of the two systems, and (iii) the enzyme(s) involved in osteoclastogenesis might not be a typical papain-like cysteine proteinase.
Literature
1.
go back to reference Takahashi, N, Udagawa, N, Takami, M, Suda, T 2002Cells of bone: Osteoclast generationBilezikian, JPRaisz, LGRodan, GA eds. Principles of bone biology2Academic PressSan Diego109126 Takahashi, N, Udagawa, N, Takami, M, Suda, T 2002Cells of bone: Osteoclast generationBilezikian, JPRaisz, LGRodan, GA eds. Principles of bone biology2Academic PressSan Diego109126
2.
go back to reference Boyle, WJ, Simonet, WS, Lacey, DL 2003Osteoclast differentiation and activationNature423337342CrossRefPubMed Boyle, WJ, Simonet, WS, Lacey, DL 2003Osteoclast differentiation and activationNature423337342CrossRefPubMed
3.
go back to reference Teitelbaum, SL, Ross, FP 2003Genetic control of osteoclast development and functionNat Rev Genet4638649CrossRefPubMed Teitelbaum, SL, Ross, FP 2003Genetic control of osteoclast development and functionNat Rev Genet4638649CrossRefPubMed
4.
go back to reference Lerner, UH 2004New molecules in the tumor necrosis factor ligand and receptor superfamilies with importance for physiological and pathological bone resorptionCrit Rev Oral Biol Med156481PubMed Lerner, UH 2004New molecules in the tumor necrosis factor ligand and receptor superfamilies with importance for physiological and pathological bone resorptionCrit Rev Oral Biol Med156481PubMed
5.
go back to reference Delaissé, JM, Boyde, A, Maconnachie, E, Ali, NN, Saer, CHJ, Eeckhout, Y, Vaes, G 1987The effects of inhibitors of cysteine-proteinases and collagenase on the resorptive activity of isolated osteoclastsBone8305313CrossRefPubMed Delaissé, JM, Boyde, A, Maconnachie, E, Ali, NN, Saer, CHJ, Eeckhout, Y, Vaes, G 1987The effects of inhibitors of cysteine-proteinases and collagenase on the resorptive activity of isolated osteoclastsBone8305313CrossRefPubMed
6.
go back to reference Delaissé, JM, Vaes, G 1992Mechanism of mineral solubilization and matrix degradation in osteoclastic bone resorptionRifkin, BRGay, CV eds. Biology and physiology of the osteoclastCRC PressBoca Raton, FL289314 Delaissé, JM, Vaes, G 1992Mechanism of mineral solubilization and matrix degradation in osteoclastic bone resorptionRifkin, BRGay, CV eds. Biology and physiology of the osteoclastCRC PressBoca Raton, FL289314
7.
go back to reference Hill, PA, Murphy, G, Docherty, AJP, Hembry, RM, Millican, TA, Reynolds, JJ, Meikle, MC 1994The effects of selective inhibitors of matrix metalloproteinases (MMPs) on bone resorption and the identification of MMPs and TIMP-1 in isolated osteoclastsJ Cell Sci10730553064PubMed Hill, PA, Murphy, G, Docherty, AJP, Hembry, RM, Millican, TA, Reynolds, JJ, Meikle, MC 1994The effects of selective inhibitors of matrix metalloproteinases (MMPs) on bone resorption and the identification of MMPs and TIMP-1 in isolated osteoclastsJ Cell Sci10730553064PubMed
8.
go back to reference Sato, T, Ovejero, MC, Hou, P, Heegaard, AM, Kumegawa, M, Foged, NT, Delaissé, JM 1997Identification of the membrane-type matrix metalloproteinase MT1-MMP in osteoclastsJ Cell Sci110589596PubMed Sato, T, Ovejero, MC, Hou, P, Heegaard, AM, Kumegawa, M, Foged, NT, Delaissé, JM 1997Identification of the membrane-type matrix metalloproteinase MT1-MMP in osteoclastsJ Cell Sci110589596PubMed
9.
go back to reference Sato, T, Foged, NT, Delaissé, JM 1998The migration of purified osteoclasts through collagen is inhibited by matrix metalloproteinase inhibitorsJ Bone Miner Res135966PubMed Sato, T, Foged, NT, Delaissé, JM 1998The migration of purified osteoclasts through collagen is inhibited by matrix metalloproteinase inhibitorsJ Bone Miner Res135966PubMed
10.
go back to reference Everts, V, Delaissé, JM, Korper, W, Beertsen, W 1998Cysteine proteinases and matrix metalloproteinases play distinct roles in the subosteoclastic resorption zoneJ Bone Miner Res1314201430PubMed Everts, V, Delaissé, JM, Korper, W, Beertsen, W 1998Cysteine proteinases and matrix metalloproteinases play distinct roles in the subosteoclastic resorption zoneJ Bone Miner Res1314201430PubMed
11.
go back to reference Tezuka, K, Tezuka, Y, Maejima, A, Sato, T, Nemoto, K, Kamioka, H, Hakeda, Y, Kumegawa, M 1994Molecular cloning of a possible cysteine proteinase predominantly expressed in osteoclastJ Biol Chem26911061109PubMed Tezuka, K, Tezuka, Y, Maejima, A, Sato, T, Nemoto, K, Kamioka, H, Hakeda, Y, Kumegawa, M 1994Molecular cloning of a possible cysteine proteinase predominantly expressed in osteoclastJ Biol Chem26911061109PubMed
12.
go back to reference Drake, FH, Dodds, RA, James, IE, Connor, JR, Debouck, C, Richardson, S, Lee-Rykaczewski, E, Coleman, L, Rieman, D, Barthlow, R, Hastings, G, Gowen, M 1996Cathepsin K, but not cathepsins B, L, or S, is abundantly expressed in human osteoclastsJ Biol Chem2711251112516CrossRefPubMed Drake, FH, Dodds, RA, James, IE, Connor, JR, Debouck, C, Richardson, S, Lee-Rykaczewski, E, Coleman, L, Rieman, D, Barthlow, R, Hastings, G, Gowen, M 1996Cathepsin K, but not cathepsins B, L, or S, is abundantly expressed in human osteoclastsJ Biol Chem2711251112516CrossRefPubMed
13.
go back to reference Yamaza, T, Goto, T, Kamiya, T, Kobayashi, Y, Sakai, H, Tanaka, T 1998Study of immunoelectron microscopic localization of cathepsin K in osteoclasts and other bone cells in the mouse femurBone2349509CrossRef Yamaza, T, Goto, T, Kamiya, T, Kobayashi, Y, Sakai, H, Tanaka, T 1998Study of immunoelectron microscopic localization of cathepsin K in osteoclasts and other bone cells in the mouse femurBone2349509CrossRef
14.
go back to reference Delaissé, JM, Eeckhout, Y, Vaes, G 1984In vivo and in vitro evidence for the involvement of cysteine proteinases in bone resorptionBiochem Biophys Res Commun125441447CrossRefPubMed Delaissé, JM, Eeckhout, Y, Vaes, G 1984In vivo and in vitro evidence for the involvement of cysteine proteinases in bone resorptionBiochem Biophys Res Commun125441447CrossRefPubMed
15.
go back to reference Lerner, UH, Grubb, A 1992Human cystatin C, a cysteine proteinase inhibitor, inhibits bone resorption in vitro stimulated by parathyroid hormone and parathyroid hormone-related peptide of malignancyJ Bone Miner Res7433440PubMed Lerner, UH, Grubb, A 1992Human cystatin C, a cysteine proteinase inhibitor, inhibits bone resorption in vitro stimulated by parathyroid hormone and parathyroid hormone-related peptide of malignancyJ Bone Miner Res7433440PubMed
16.
go back to reference Hill, PA, Buttle, DJ, Jones, SJ, Boyde, A, Murata, M, Reynolds, JJ, Meikle, MC 1994Inhibition of bone resorption by selective inactivators of cysteine proteinasesJ Cell Biochem56118130CrossRefPubMed Hill, PA, Buttle, DJ, Jones, SJ, Boyde, A, Murata, M, Reynolds, JJ, Meikle, MC 1994Inhibition of bone resorption by selective inactivators of cysteine proteinasesJ Cell Biochem56118130CrossRefPubMed
17.
go back to reference Votta, BJ, Levy, MA, Badger, A, Bradbeer, J, Dodds, RA, James, IE, Thompson, S, Bossard, MJ, Carr, T, Connor, JR, Tomaszek, TA, Szewczuk, L, Drake, FH, Veber, DF, Gowen, M 1997Peptide aldehyde inhibitors of cathepsin K inhibit bone resorption both in vitro and in vivoJ Bone Miner Res1213961406PubMed Votta, BJ, Levy, MA, Badger, A, Bradbeer, J, Dodds, RA, James, IE, Thompson, S, Bossard, MJ, Carr, T, Connor, JR, Tomaszek, TA, Szewczuk, L, Drake, FH, Veber, DF, Gowen, M 1997Peptide aldehyde inhibitors of cathepsin K inhibit bone resorption both in vitro and in vivoJ Bone Miner Res1213961406PubMed
18.
go back to reference Thompson, SK, Halbert, SM, Bossard, MJ, Tomaszek, TA, Levy, MA, Zhao, B, Smith, WW, Abdel-Meguds, SS, Janson, CA, D’Alessio, KJ, McQueney, MS, Amegadzie, BY, Hanning, CR, DesJarlais, RL, Briand, J, Sarkar, SK, Huddleston, MJ, Ijames, CF, Carr, SA, Garnes, KT, Shu, A, Heys, JR, Bradbeer, J, Zembryki, D, Lee-Rykaczewski, L, James, IE, Lark, MW, Drake, FH, Gowen, M, Gleason, JG, Veber, DF 1997Design of potent and selective human cathepsin K inhibitors that span the active siteProc Natl Acad Sci USA94142494254CrossRefPubMed Thompson, SK, Halbert, SM, Bossard, MJ, Tomaszek, TA, Levy, MA, Zhao, B, Smith, WW, Abdel-Meguds, SS, Janson, CA, D’Alessio, KJ, McQueney, MS, Amegadzie, BY, Hanning, CR, DesJarlais, RL, Briand, J, Sarkar, SK, Huddleston, MJ, Ijames, CF, Carr, SA, Garnes, KT, Shu, A, Heys, JR, Bradbeer, J, Zembryki, D, Lee-Rykaczewski, L, James, IE, Lark, MW, Drake, FH, Gowen, M, Gleason, JG, Veber, DF 1997Design of potent and selective human cathepsin K inhibitors that span the active siteProc Natl Acad Sci USA94142494254CrossRefPubMed
19.
go back to reference Inui, T, Ishibashi, O, Inaoka, T, Origane, Y, Kumegawa, M, Kokubo, T, Yamamura, T 1997Cathepsin K antisense oligodeoxynucleotide inhibits osteoclastic bone resorptionJ Biol Chem27281098112CrossRefPubMed Inui, T, Ishibashi, O, Inaoka, T, Origane, Y, Kumegawa, M, Kokubo, T, Yamamura, T 1997Cathepsin K antisense oligodeoxynucleotide inhibits osteoclastic bone resorptionJ Biol Chem27281098112CrossRefPubMed
20.
go back to reference Lerner, UH, Johansson, L, Ransjö, M, Rosenquist, JB, Reinholt, FP, Grubb, A 1997Cystatin C, an inhibitor of bone-resorption produced by osteoblastsActa Physiol Scand .1618l92CrossRef Lerner, UH, Johansson, L, Ransjö, M, Rosenquist, JB, Reinholt, FP, Grubb, A 1997Cystatin C, an inhibitor of bone-resorption produced by osteoblastsActa Physiol Scand .1618l92CrossRef
21.
go back to reference Johansson, L, Grubb, A, Abrahamson, M, Kasprzykowski, F, Kasprzykowska, R, Grzonka, Z, Lerner, UH 2000A peptidyl derivative mimicking the inhibitory center of cystatin C inhibits bone resorption in vitroBone26451459CrossRefPubMed Johansson, L, Grubb, A, Abrahamson, M, Kasprzykowski, F, Kasprzykowska, R, Grzonka, Z, Lerner, UH 2000A peptidyl derivative mimicking the inhibitory center of cystatin C inhibits bone resorption in vitroBone26451459CrossRefPubMed
22.
go back to reference Stroup, GB, Lark, MW, Veber, DF, Bhattacharyya, A, Blake, S, Dare, LC, Erhard, KF, Hoffman, SJ, James, IE, Marquis, RW, Ru, Y, Vasko-Moser, JA, Smith, BR, Tomaszek, T, Gowen, M 2001Potent and selective inhibition of human cathepsin K leads to inhibition of bone resorption in vivo in a nonhuman primateJ Bone Miner Res1617391746PubMed Stroup, GB, Lark, MW, Veber, DF, Bhattacharyya, A, Blake, S, Dare, LC, Erhard, KF, Hoffman, SJ, James, IE, Marquis, RW, Ru, Y, Vasko-Moser, JA, Smith, BR, Tomaszek, T, Gowen, M 2001Potent and selective inhibition of human cathepsin K leads to inhibition of bone resorption in vivo in a nonhuman primateJ Bone Miner Res1617391746PubMed
23.
go back to reference Everts, V, Delaissé, JM, Korper, W, Niehof, A, Vaes, G, Beertsen, W 1992Degradation of collagen in the bone-resorbing compartment underlying the osteoclast involves both cysteine-proteinases and matrix metalloproteinasesJ Cell Physiol150221231CrossRefPubMed Everts, V, Delaissé, JM, Korper, W, Niehof, A, Vaes, G, Beertsen, W 1992Degradation of collagen in the bone-resorbing compartment underlying the osteoclast involves both cysteine-proteinases and matrix metalloproteinasesJ Cell Physiol150221231CrossRefPubMed
24.
go back to reference Saftig, P, Hunziker, E, Wehmeyer, O, Jones, S, Boyde, A, Rommerskirch, W, Moritz, JD, Schu, P, Figura, K 1998Impaired osteoclastic bone resorption leads to osteopetrosis in cathepsin K-deficient miceProc Nad Acad Sci USA951345313458CrossRef Saftig, P, Hunziker, E, Wehmeyer, O, Jones, S, Boyde, A, Rommerskirch, W, Moritz, JD, Schu, P, Figura, K 1998Impaired osteoclastic bone resorption leads to osteopetrosis in cathepsin K-deficient miceProc Nad Acad Sci USA951345313458CrossRef
25.
go back to reference Gowen, M, Lazner, F, Dodds, R, Kapadia, R, Field, J, Tavaria, M, Bertoncello, I, Drake, F, Zavarselk, S, Tellis, I, Hertzog, P, Debouck, C, Kola, I 1999Cathepsin K knockout mice develop osteopetrosis due to a deficit in matrix degradation but not demineralizationJ Bone Miner Res1416541663PubMed Gowen, M, Lazner, F, Dodds, R, Kapadia, R, Field, J, Tavaria, M, Bertoncello, I, Drake, F, Zavarselk, S, Tellis, I, Hertzog, P, Debouck, C, Kola, I 1999Cathepsin K knockout mice develop osteopetrosis due to a deficit in matrix degradation but not demineralizationJ Bone Miner Res1416541663PubMed
26.
go back to reference Gelb, BD, Shi, GP, Chapman, HA, Desnick, RJ 1996Pycnodysostosis, a disease caused by cathepsin K deficiencyScience27312361238PubMed Gelb, BD, Shi, GP, Chapman, HA, Desnick, RJ 1996Pycnodysostosis, a disease caused by cathepsin K deficiencyScience27312361238PubMed
27.
go back to reference Everts, V, Aronson, DC, Beertsen, W 1985Phagocytosis of bone collagen by osteocksts in two cases of pycnodysostosisCalcif Tissue Int372531PubMed Everts, V, Aronson, DC, Beertsen, W 1985Phagocytosis of bone collagen by osteocksts in two cases of pycnodysostosisCalcif Tissue Int372531PubMed
28.
go back to reference Zaidi, M, Troen, B, Moonga, BS, Abe, E 2001Cathepsin K, osteoclastic resorption, and osteoporosis therapyJ Bone Miner Res1617471749PubMed Zaidi, M, Troen, B, Moonga, BS, Abe, E 2001Cathepsin K, osteoclastic resorption, and osteoporosis therapyJ Bone Miner Res1617471749PubMed
29.
go back to reference Barrett, AJ, Fritz, H, Grubb, A, Isemura, S, Järvinen, M, Katunuma, N, Machleidt, W, Muller-Esterl, W, Sasaki, M, Turk, V 1986Nomenclature and classification of the proteins homologous with the cysteine-proteinase inhibitor chicken cystatinBiochem J236312PubMed Barrett, AJ, Fritz, H, Grubb, A, Isemura, S, Järvinen, M, Katunuma, N, Machleidt, W, Muller-Esterl, W, Sasaki, M, Turk, V 1986Nomenclature and classification of the proteins homologous with the cysteine-proteinase inhibitor chicken cystatinBiochem J236312PubMed
30.
go back to reference Freije, JP, Abrahamson, M, Ólafsson, Í, Velasco, G, Grubb, A, López-Otín, C 1991Stucture and expression of the gene encoding cystatin D, a novel human cysteine proteinase inhibitorJ Biol Chem2662053820543PubMed Freije, JP, Abrahamson, M, Ólafsson, Í, Velasco, G, Grubb, A, López-Otín, C 1991Stucture and expression of the gene encoding cystatin D, a novel human cysteine proteinase inhibitorJ Biol Chem2662053820543PubMed
31.
go back to reference Freije, JP, Pendás, AM, Velasco, G, Roca, A, Abrahamson, M, López-Otín, C 1993Localization of the human cystatin D gene (CST5) to chromosone 20p11.21 by in situ hybridizationCytogenet Cell Genet622931PubMed Freije, JP, Pendás, AM, Velasco, G, Roca, A, Abrahamson, M, López-Otín, C 1993Localization of the human cystatin D gene (CST5) to chromosone 20p11.21 by in situ hybridizationCytogenet Cell Genet622931PubMed
32.
go back to reference Ni, J, Abrahamson, M, Zhang, M, Alvarez Fernandez, M, Grubb, A, Su, J, Yu, GL, Li, Y, Parmelee, D, Xing, L, Coleman, TA, Gentz, S, Thotakura, R, Nguyen, N, Hesselberg, M, Gentz, R 1997Cystatin E is a novel human cysteine proteinase inhibitor with structural resemblance to family 2 cystatinsJ Biol Chem2721085310858CrossRefPubMed Ni, J, Abrahamson, M, Zhang, M, Alvarez Fernandez, M, Grubb, A, Su, J, Yu, GL, Li, Y, Parmelee, D, Xing, L, Coleman, TA, Gentz, S, Thotakura, R, Nguyen, N, Hesselberg, M, Gentz, R 1997Cystatin E is a novel human cysteine proteinase inhibitor with structural resemblance to family 2 cystatinsJ Biol Chem2721085310858CrossRefPubMed
33.
go back to reference Ni, J, Alvarez Fernandez, M, Danielsson, L, Chillakuru, RA, Zhang, J, Grubb, A, Su, J, Gentz, R, Abrahamson, M 1998Cystatin F is a glycosylated human low molecular weight cysteine proteinase inhibitorJ Biol Chem2732479724804CrossRefPubMed Ni, J, Alvarez Fernandez, M, Danielsson, L, Chillakuru, RA, Zhang, J, Grubb, A, Su, J, Gentz, R, Abrahamson, M 1998Cystatin F is a glycosylated human low molecular weight cysteine proteinase inhibitorJ Biol Chem2732479724804CrossRefPubMed
34.
go back to reference Yamaza, T, Tjuji, Y, Goto, T, Kido, MA, Nishijima, K, Moroi, R, Akamine, A, Tanaka, T 2001Comparison in localization between cystatin C and cathepsin K in osteoclasts and other cells in mouse tibia epiphysis by immunolight and immunoelectron microscopyBone294253CrossRefPubMed Yamaza, T, Tjuji, Y, Goto, T, Kido, MA, Nishijima, K, Moroi, R, Akamine, A, Tanaka, T 2001Comparison in localization between cystatin C and cathepsin K in osteoclasts and other cells in mouse tibia epiphysis by immunolight and immunoelectron microscopyBone294253CrossRefPubMed
35.
go back to reference Freije, JP, Balbín, M, Abrahamson, M, Velasco, G, Dalbøge, H, Grubb, A, López-Otín, C 1993Human cystatin D. cDNA cloning, characterization of the Escherichia coli expressed inhibitor, and identification of the native protein in salivaJ Biol Chem2681573715744PubMed Freije, JP, Balbín, M, Abrahamson, M, Velasco, G, Dalbøge, H, Grubb, A, López-Otín, C 1993Human cystatin D. cDNA cloning, characterization of the Escherichia coli expressed inhibitor, and identification of the native protein in salivaJ Biol Chem2681573715744PubMed
36.
go back to reference Balbin, M, Hall, A, Grubb, A, Mason, RW, López-Otín, C, Abrahamson, M 1994Structural and functional characterization of two allelic variants of human cystatin D sharing a characteristic inhibition spectrum against mammalian cysteine proteinasesJ Biol Chem2692315623162PubMed Balbin, M, Hall, A, Grubb, A, Mason, RW, López-Otín, C, Abrahamson, M 1994Structural and functional characterization of two allelic variants of human cystatin D sharing a characteristic inhibition spectrum against mammalian cysteine proteinasesJ Biol Chem2692315623162PubMed
37.
go back to reference Alvarez Fernandez, M, Barrett, AJ, Gerhartz, B, Dando, PM, Ni, J, Abrahamson, M 1999Inhibition of mammalian legumain by some cystatins is due to a novel second reactive siteJ Biol Chem2741919519203CrossRefPubMed Alvarez Fernandez, M, Barrett, AJ, Gerhartz, B, Dando, PM, Ni, J, Abrahamson, M 1999Inhibition of mammalian legumain by some cystatins is due to a novel second reactive siteJ Biol Chem2741919519203CrossRefPubMed
38.
go back to reference Brage, M, Lie, A, Ransjö, M, Kasprzykowski, F, Kasprzykowska, R, Abrahamson, M, Grubb, A, Lerner, UH 2004Osteoclastogenesis is decreased by cysteine proteinase inhibitorsBone34412434CrossRefPubMed Brage, M, Lie, A, Ransjö, M, Kasprzykowski, F, Kasprzykowska, R, Abrahamson, M, Grubb, A, Lerner, UH 2004Osteoclastogenesis is decreased by cysteine proteinase inhibitorsBone34412434CrossRefPubMed
39.
go back to reference Abrahamson, M, Dalböge, H, Olafsson, I, Carlsen, S, Grubb, A 1988Efficient production of native, biologically active human cystatin C by Escherichia coli.FEBS Lett2361418CrossRefPubMed Abrahamson, M, Dalböge, H, Olafsson, I, Carlsen, S, Grubb, A 1988Efficient production of native, biologically active human cystatin C by Escherichia coli.FEBS Lett2361418CrossRefPubMed
40.
go back to reference Hall, A, Håkansson, K, Mason, RW, Grubb, A, Abrahamson, M 1995Structural basis for the biological specificity of cystatin C. Identification of Leu-9 in the N-terminal binding region as a selectivity-conferring residue in the inhibition of mammalian cysteine peptidasesJ Biol Chem27051155121CrossRefPubMed Hall, A, Håkansson, K, Mason, RW, Grubb, A, Abrahamson, M 1995Structural basis for the biological specificity of cystatin C. Identification of Leu-9 in the N-terminal binding region as a selectivity-conferring residue in the inhibition of mammalian cysteine peptidasesJ Biol Chem27051155121CrossRefPubMed
41.
go back to reference Blumberg, S, Schechter, I, Berger, A 1970The purification of papain by affinity chromatographyEur J Biochem1597102CrossRefPubMed Blumberg, S, Schechter, I, Berger, A 1970The purification of papain by affinity chromatographyEur J Biochem1597102CrossRefPubMed
42.
go back to reference Lerner, UH 1987Modifications of the mouse calvarial technique improve the responsiveness to stimulators of bone resorptionJ Bone Miner Res2375383PubMed Lerner, UH 1987Modifications of the mouse calvarial technique improve the responsiveness to stimulators of bone resorptionJ Bone Miner Res2375383PubMed
43.
go back to reference Ljunggren, Ö, Ransjö, M, Lerner, UH 1991In vitro studies on bone resorption in neonatal mouse calvariae using a modified dissection technique giving four samples of bone from each calvariaJ Bone Miner Res6543550PubMed Ljunggren, Ö, Ransjö, M, Lerner, UH 1991In vitro studies on bone resorption in neonatal mouse calvariae using a modified dissection technique giving four samples of bone from each calvariaJ Bone Miner Res6543550PubMed
44.
go back to reference Takahashi, N, Yamana, H, Yoshiki, S, Roodman, GD, Mundy, GR, Jones, SJ, Boyde, A, Suda, T 1988Osteoclast-like cell formation and its regulation by osteotropic hormones in mouse bone marrow culturesEndocrinology12213731382PubMed Takahashi, N, Yamana, H, Yoshiki, S, Roodman, GD, Mundy, GR, Jones, SJ, Boyde, A, Suda, T 1988Osteoclast-like cell formation and its regulation by osteotropic hormones in mouse bone marrow culturesEndocrinology12213731382PubMed
46.
go back to reference Henderson, PJ 1972A linear equation that describes the steady-state kinetics of enzymes and subcellular particles interacting with tightly bound inhibitorsBiochem J127321333PubMed Henderson, PJ 1972A linear equation that describes the steady-state kinetics of enzymes and subcellular particles interacting with tightly bound inhibitorsBiochem J127321333PubMed
47.
go back to reference Abrahamson, M, Mason, RW, Hansson, H, Buttle, DJ, Grubb, A, Ohlsson, K 1991Human cystatin C. Role of the N-terminal segment in the inhibition of human cysteine proteinases and in its inactivation by leucocyte elastaseBiochem J273621626PubMed Abrahamson, M, Mason, RW, Hansson, H, Buttle, DJ, Grubb, A, Ohlsson, K 1991Human cystatin C. Role of the N-terminal segment in the inhibition of human cysteine proteinases and in its inactivation by leucocyte elastaseBiochem J273621626PubMed
48.
go back to reference Kembhavi, AA, Buttle, DJ, Knight, CG, Barrett, AJ 1993The two cysteine endopeptidases of legume seeds: purification and characterization by use of specific fiuorometric assaysArch Biochem Biophys303208213CrossRefPubMed Kembhavi, AA, Buttle, DJ, Knight, CG, Barrett, AJ 1993The two cysteine endopeptidases of legume seeds: purification and characterization by use of specific fiuorometric assaysArch Biochem Biophys303208213CrossRefPubMed
49.
go back to reference Dalton, JP, Hola-Jamriska, L, Brindley, PJ 1995Asparaginyl endopeptidase activity in adult Schistosoma mansoniParasitology111575580PubMed Dalton, JP, Hola-Jamriska, L, Brindley, PJ 1995Asparaginyl endopeptidase activity in adult Schistosoma mansoniParasitology111575580PubMed
50.
go back to reference Chen, JM, Dando, PM, Rawlings, ND, Brown, MA, Young, NE, Stevens, RA, Hewitt, E, Watts, C, Barrett, AJ 1997Cloning, isolation, and characterization of mammalian legumain, an asparaginyl endopeptidaseJ Biol Chem27280908098CrossRefPubMed Chen, JM, Dando, PM, Rawlings, ND, Brown, MA, Young, NE, Stevens, RA, Hewitt, E, Watts, C, Barrett, AJ 1997Cloning, isolation, and characterization of mammalian legumain, an asparaginyl endopeptidaseJ Biol Chem27280908098CrossRefPubMed
51.
go back to reference Manoury, B, Hewitt, EC, Morrice, N, Dando, PM, Barrett, AJ, Watts, C 1998An asparaginyl endopeptidase processes a microbial antigen for class II MHC presentationNature396695699CrossRefPubMed Manoury, B, Hewitt, EC, Morrice, N, Dando, PM, Barrett, AJ, Watts, C 1998An asparaginyl endopeptidase processes a microbial antigen for class II MHC presentationNature396695699CrossRefPubMed
52.
go back to reference Choi, SJ, Reddy, SV, Devlin, RD, Menaa, C, Chung, H, Boyce, BF, Roodman, GD 1999Identification of human asparaginyl endopeptidase (legumain) as an inhibitor of osteoclast formation and bone resorptionJ Biol Chem2742774727753CrossRefPubMed Choi, SJ, Reddy, SV, Devlin, RD, Menaa, C, Chung, H, Boyce, BF, Roodman, GD 1999Identification of human asparaginyl endopeptidase (legumain) as an inhibitor of osteoclast formation and bone resorptionJ Biol Chem2742774727753CrossRefPubMed
53.
go back to reference Janowski, R, Kozak, M, Jankowska, E, Grzonka, Z, Grubb, A, Abrahamson, M, Jaskolski, M 2001Human cystatin C, an amyloidogenic protein, dimerizes through three-dimensional domain swappingNat Struct Biol8316320CrossRefPubMed Janowski, R, Kozak, M, Jankowska, E, Grzonka, Z, Grubb, A, Abrahamson, M, Jaskolski, M 2001Human cystatin C, an amyloidogenic protein, dimerizes through three-dimensional domain swappingNat Struct Biol8316320CrossRefPubMed
54.
go back to reference Abrahamson, M, Ritonja, A, Brown, MA, Grubb, A, Machleidt, W, Barrett, AJ 1987Identification of the probable inhibitory reactive sites of the cysteine proteinase inhibitors human cystatin C and chicken cystatinJ Biol Chem26296889694PubMed Abrahamson, M, Ritonja, A, Brown, MA, Grubb, A, Machleidt, W, Barrett, AJ 1987Identification of the probable inhibitory reactive sites of the cysteine proteinase inhibitors human cystatin C and chicken cystatinJ Biol Chem26296889694PubMed
55.
go back to reference Bode, W, Engh, R, Musil, D, Thiele, U, Huber, R, Karshikov, A, Brzin, J, Kos, J, Turk, V 1988The 2.0 A X-ray crystal structure of chicken egg white cystatin and its possible mode of interaction with cysteine proteinasesEMBO J725932599PubMed Bode, W, Engh, R, Musil, D, Thiele, U, Huber, R, Karshikov, A, Brzin, J, Kos, J, Turk, V 1988The 2.0 A X-ray crystal structure of chicken egg white cystatin and its possible mode of interaction with cysteine proteinasesEMBO J725932599PubMed
56.
go back to reference Sokol, JP, Schiemann, WP 2004Cystatin C antagonizes transforming growth factor β signaling in normal and cancer cellsMol Cancer Res2183195PubMed Sokol, JP, Schiemann, WP 2004Cystatin C antagonizes transforming growth factor β signaling in normal and cancer cellsMol Cancer Res2183195PubMed
57.
go back to reference Lindahl, P, Abrahamson, M, Björk, I 1992Interaction of recombinant human cystatin C with the cysteine proteinases papain and actinidinBiochem J2814955PubMed Lindahl, P, Abrahamson, M, Björk, I 1992Interaction of recombinant human cystatin C with the cysteine proteinases papain and actinidinBiochem J2814955PubMed
Metadata
Title
Different Cysteine Proteinases Involved in Bone Resorption and Osteoclast Formation
Authors
M. Brage
M. Abrahamson
V. Lindström
A. Grubb
U. H. Lerner
Publication date
01-06-2005
Publisher
Springer-Verlag
Published in
Calcified Tissue International / Issue 6/2005
Print ISSN: 0171-967X
Electronic ISSN: 1432-0827
DOI
https://doi.org/10.1007/s00223-004-0043-y

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