Mechanisms for fiber-type specificity of skeletal muscle atrophy

被引:342
作者
Wang, Yichen [1 ]
Pessin, Jeffrey E. [1 ,2 ]
机构
[1] Albert Einstein Coll Med, Diabet Res & Training Ctr, Dept Mol Pharmacol, Bronx, NY 10461 USA
[2] Albert Einstein Coll Med, Diabet Res & Training Ctr, Dept Med, Bronx, NY 10461 USA
关键词
fiber-specific atrophy; signaling; skeletal muscle; SIGNALING PATHWAY; POMPE DISEASE; AUTOPHAGY; MICE; MASS; GENE; MYOSTATIN; EXPRESSION; DIFFERENTIATION; TRANSCRIPTION;
D O I
10.1097/MCO.0b013e328360272d
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Purpose of review There are a variety of pathophysiologic conditions that are known to induce skeletal muscle atrophy. However, muscle wasting can occur through multiple distinct signaling pathways with differential sensitivity between selective skeletal muscle fiber subtypes. This review summarizes some of the underlying molecular mechanisms responsible for fiber-specific muscle mass regulation. Recent findings Peroxisome proliferator-activated receptor gamma coactivator 1-alpha protects slow-twitch oxidative fibers from denervation/immobilization (disuse)-induced muscle atrophies. Nutrient-related muscle atrophies, such as those induced by cancer cachexia, sepsis, chronic heart failure, or diabetes, are largely restricted to fast-twitch glycolytic fibers, of which the underlying mechanism is usually related to abnormality of protein degradation, including proteasomal and lysosomal pathways. In contrast, nuclear factor kappaB activation apparently serves a dual function by inducing both fast-twitch fiber atrophy and slow-twitch fiber degeneration. Summary Fast-twitch glycolytic fibers are more vulnerable than slow-twitch oxidative fibers under a variety of atrophic conditions related to signaling transduction of Forkhead box O family, autophagy inhibition, transforming growth factor beta family, and nuclear factor-kappaB. The resistance of oxidative fibers may result from the protection of peroxisome proliferator-activated receptor gamma coactivator 1-alpha.
引用
收藏
页码:243 / 250
页数:8
相关论文
共 51 条
[1]   Targeting the TGFβ signalling pathway in disease [J].
Akhurst, Rosemary J. ;
Hata, Akiko .
NATURE REVIEWS DRUG DISCOVERY, 2012, 11 (10) :790-811
[2]   Deficiency of inducible nitric oxide synthase attenuates immobilization-induced skeletal muscle atrophy in mice [J].
Bae, Sang-Keun ;
Cha, Hey-Na ;
Ju, Tae-Jin ;
Kim, Yong-Woon ;
Kim, Hee Sun ;
Kim, Yong-Dae ;
Dan, Jin-Myoung ;
Kim, Jong-Yeon ;
Kim, Se-dong ;
Park, So-Young .
JOURNAL OF APPLIED PHYSIOLOGY, 2012, 113 (01) :114-123
[3]   Transcriptional mechanisms regulating skeletal muscle differentiation, growth and homeostasis [J].
Braun, Thomas ;
Gautel, Mathias .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2011, 12 (06) :349-361
[4]   IKKβ/NF-κB activation causes severe muscle wasting in mice [J].
Cai, DS ;
Frantz, JD ;
Tawa, NE ;
Melendez, PA ;
Oh, BC ;
Lidov, HGW ;
Hasselgren, PO ;
Frontera, WR ;
Lee, J ;
Glass, DJ ;
Shoelson, SE .
CELL, 2004, 119 (02) :285-298
[5]   The role of myostatin in muscle wasting: an overview [J].
Elkina, Yulia ;
von Haehling, Stephan ;
Anker, Stefan D. ;
Springer, Jochen .
JOURNAL OF CACHEXIA SARCOPENIA AND MUSCLE, 2011, 2 (03) :143-151
[6]   Cancer Cachexia: Mediators, Signaling, and Metabolic Pathways [J].
Fearon, Kenneth C. H. ;
Glass, David J. ;
Guttridge, Denis C. .
CELL METABOLISM, 2012, 16 (02) :153-166
[7]   Dysfunction of endocytic and autophagic pathways in a lysosomal storage disease [J].
Fukuda, T ;
Ewan, L ;
Bauer, M ;
Mattaliano, RJ ;
Zaal, K ;
Ralston, E ;
Plotz, PH ;
Raben, N .
ANNALS OF NEUROLOGY, 2006, 59 (04) :700-708
[8]   Loss of myostatin expression alters fiber-type distribution and expression of myosin heavy chain isoforms in slow- and fast-type skeletal muscle [J].
Girgenrath, S ;
Song, K ;
Whittemore, LA .
MUSCLE & NERVE, 2005, 31 (01) :34-40
[9]   Recent progress toward understanding the molecular mechanisms that regulate skeletal muscle mass [J].
Goodman, Craig A. ;
Mayhew, David L. ;
Hornberger, Troy A. .
CELLULAR SIGNALLING, 2011, 23 (12) :1896-1906
[10]   Autophagy is defective in collagen VI muscular dystrophies, and its reactivation rescues myofiber degeneration [J].
Grumati, Paolo ;
Coletto, Luisa ;
Sabatelli, Patrizia ;
Cescon, Matilde ;
Angelin, Alessia ;
Bertaggia, Enrico ;
Blaauw, Bert ;
Urciuolo, Anna ;
Tiepolo, Tania ;
Merlini, Luciano ;
Maraldi, Nadir M. ;
Bernardi, Paolo ;
Sandri, Marco ;
Bonaldo, Paolo .
NATURE MEDICINE, 2010, 16 (11) :1313-U169