Transgenic overexpression of caveolin-3 in skeletal muscle fibers induces a Duchenne-like muscular dystrophy phenotype

被引:123
|
作者
Galbiati, F
Volonté, D
Chu, JB
Li, M
Fine, SW
Fu, MF
Bermudez, J
Pedemonte, M
Weidenheim, KM
Pestell, RG
Minetti, C
Lisanti, MP
机构
[1] Yeshiva Univ Albert Einstein Coll Med, Dept Mol Pharmacol, Bronx, NY 10461 USA
[2] Yeshiva Univ Albert Einstein Coll Med, Dept Pathol, Bronx, NY 10461 USA
[3] Yeshiva Univ Albert Einstein Coll Med, Dept Dev & Mol Biol, Bronx, NY 10461 USA
[4] Yeshiva Univ Albert Einstein Coll Med, Dept Neuropathol & Pathol, Bronx, NY 10461 USA
[5] Yeshiva Univ Albert Einstein Coll Med, Albert Einstein Canc Ctr, Bronx, NY 10461 USA
[6] Univ Genoa, Ist Gastlili, Serv Malattie Neuromuscolari, I-16147 Genoa, Italy
关键词
D O I
10.1073/pnas.160249097
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
It recently was reported that Duchenne muscular dystrophy (DMD) patients and mdx mice have elevated levels of caveolin-3 expression in their skeletal muscle. However, it remains unknown whether increased caveolin-3 levels in DMD patients contribute to the pathogenesis of DMD. Here, using a genetic approach, we test this hypothesis directly by overexpressing wild-type caveolin-3 as a transgene in mice, Analysis of skeletal muscle tissue from caveolin-3- overexpressing transgenic mice reveals: (i) a dramatic increase in the number of sarcolemmal muscle cell caveolae; (ii) a preponderance of hypertrophic, necrotic, and immature/regenerating skeletal muscle fibers with characteristic central nuclei; and (iii) down-regulation of dystrophin and beta-dystroglycan protein expression. In addition, these mice show elevated serum creatine kinase revels, consistent with the myo-necrosis observed morphologically. The Duchenne-like phenotype of caveolin-3 transgenic mice will provide an important mouse model for understanding the pathogenesis of DMD in humans.
引用
收藏
页码:9689 / 9694
页数:6
相关论文
共 42 条
  • [31] Galectin-3 and N-acetylglucosamine promote myogenesis and improve skeletal muscle function in the mdx model of Duchenne muscular dystrophy
    Rancourt, Ann
    Dufresne, Sebastien S.
    St-Pierre, Guillaume
    Levesque, Julie-Christine
    Nakamura, Haruka
    Kikuchi, Yodai
    Satoh, Masahiko S.
    Frenette, Jerome
    Sato, Sachiko
    FASEB JOURNAL, 2018, 32 (12): : 6445 - 6455
  • [32] Caspase 3 expression correlates with skeletal muscle apoptosis in Duchenne and facioscapulo human muscular dystrophy. A potential target for pharmacological treatment?
    Sandri, M
    El Meslemani, AH
    Sandri, C
    Schjerling, P
    Vissing, K
    Andersen, JL
    Rossini, K
    Carraro, U
    Angelini, C
    JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2001, 60 (03): : 302 - 312
  • [33] Sarcolemmal FAT/CD36 in human skeletal muscle colocalizes with caveolin-3 and is more abundant in type 1 than in type 2 fibers
    Vistisen, B
    Roepstorff, K
    Roepstorff, C
    Bonen, A
    van Deurs, B
    Kiens, B
    JOURNAL OF LIPID RESEARCH, 2004, 45 (04) : 603 - 609
  • [34] GSK3 inhibition improves skeletal muscle function and whole-body metabolism in male mouse models of Duchenne muscular dystrophy
    Marcella, Bianca M.
    Hockey, Briana L.
    Braun, Jessica L.
    Whitley, Kennedy C.
    Geromella, Mia S.
    Baranowski, Ryan W.
    Watson, Colton J. F.
    Silvera, Sebastian
    Hamstra, Sophie I.
    Wasilewicz, Luc J.
    Crozier, Robert W. E.
    Marais, Amelie A. T.
    Kim, Kun Ho
    Lee, Gabsang
    Vandenboom, Rene
    Roy, Brian D.
    Macneil, Adam J.
    Macpherson, Rebecca E. K.
    Fajardo, Val A.
    NATURE COMMUNICATIONS, 2024, 15 (01)
  • [35] Inhibition of microRNA-92a increases blood vessels and satellite cells in skeletal muscle but does not improve duchenne muscular dystrophy-related phenotype in mdx mice
    Verma, Mayank
    Asakura, Yoko
    Asakura, Atsushi
    MUSCLE & NERVE, 2019, 59 (05) : 594 - 602
  • [36] Dnmt3a overexpression disrupts skeletal muscle homeostasis, promotes an aging-like phenotype, and reduces metabolic elasticity
    Oyabu, Mamoru
    Ohira, Yuto
    Fujita, Mariko
    Ishihara, Kengo
    Ono, Yusuke
    Kamei, Yasutomi
    Oyabu, Mamoru
    Ohira, Yuto
    Fujita, Mariko
    Yoshioka, Kiyoshi
    Kawaguchi, Runa
    Kubo, Atsushi
    Hatazawa, Yukino
    Yukitoshi, Hinako
    Quiroga, Huascar Pedro Ortuste
    Horii, Naoki
    Miura, Fumihito
    Araki, Hiromitsu
    Okano, Masaki
    Hatada, Izuho
    Gotoh, Hitoshi
    Yoshizawa, Tatsuya
    Fukada, So-ichiro
    Ogawa, Yoshihiro
    Ito, Takashi
    Ishihara, Kengo
    One, Yusuke
    Kamei, Yasutomi
    ISCIENCE, 2025, 28 (04)
  • [37] Loss of caveolin-3 induced by the dystrophy-associated P104L mutation impairs L-type calcium channel function in mouse skeletal muscle cells
    Couchoux, Harold
    Allard, Bruno
    Legrand, Claude
    Jacquemond, Vincent
    Berthier, Christine
    JOURNAL OF PHYSIOLOGY-LONDON, 2007, 580 (03): : 745 - 754
  • [38] Can't live with or without it: calcium and its role in Duchenne muscular dystrophy-induced muscle weakness. Focus on "SERCA1 overexpression minimizes skeletal muscle damage in dystrophic mouse models"
    Cheng, Arthur J.
    Andersson, Daniel C.
    Lanner, Johanna T.
    AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2015, 308 (09): : C697 - C698
  • [39] [H-3] NITRENDIPINE RECEPTORS AS MARKERS OF A CLASS OF PUTATIVE VOLTAGE-SENSITIVE CA2+ CHANNELS IN NORMAL HUMAN SKELETAL-MUSCLE AND IN MUSCLE FROM DUCHENNE MUSCULAR-DYSTROPHY PATIENTS
    DESNUELLE, C
    RENAUD, JF
    DELPONT, E
    SERRATRICE, G
    LAZDUNSKI, M
    MUSCLE & NERVE, 1986, 9 (02) : 148 - 151
  • [40] Expression of the muscular dystrophy-associated caveolin-3P104L mutant in adult mouse skeletal muscle specifically alters the Ca2+ channel function of the dihydropyridine receptor
    Weiss, Norbert
    Couchoux, Harold
    Legrand, Claude
    Berthier, Christine
    Allard, Bruno
    Jacquemond, Vincent
    PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 2008, 457 (02): : 361 - 375