p21-Activated Kinase 1 Is Permissive for the Skeletal Muscle Hypertrophy Induced by Myostatin Inhibition

被引:3
作者
Barbe, Caroline [1 ]
Loumaye, Audrey [1 ]
Lause, Pascale [1 ]
Ritvos, Olli [2 ]
Thissen, Jean-Paul [1 ]
机构
[1] Catholic Univ Louvain, Inst Clin & Expt Res, Pole Endocrinol Diabet & Nutr, Brussels, Belgium
[2] Univ Helsinki, Fac Med, Dept Physiol, Helsinki, Finland
关键词
myostatin; follistatin; sActRIIB; PAK1; skeletal muscle hypertrophy; IIB RECEPTOR; PROTEIN-SYNTHESIS; EXPRESSION; KINASE; GROWTH; PAK1; PATHWAY; MICE; DYSTROPHIN; ATROPHY;
D O I
10.3389/fphys.2021.677746
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Skeletal muscle, the most abundant tissue in the body, plays vital roles in locomotion and metabolism. Understanding the cellular processes that govern regulation of muscle mass and function represents an essential step in the development of therapeutic strategies for muscular disorders. Myostatin, a member of the TGF-beta family, has been identified as a negative regulator of muscle development. Indeed, its inhibition induces an extensive skeletal muscle hypertrophy requiring the activation of Smad 1/5/8 and the Insulin/IGF-I signaling pathway, but whether other molecular mechanisms are involved in this process remains to be determined. Using transcriptomic data from various Myostatin inhibition models, we identified Pak1 as a potential mediator of Myostatin action on skeletal muscle mass. Our results show that muscle PAK1 levels are systematically increased in response to Myostatin inhibition, parallel to skeletal muscle mass, regardless of the Myostatin inhibition model. Using Pak1 knockout mice, we investigated the role of Pak1 in the skeletal muscle hypertrophy induced by different approaches of Myostatin inhibition. Our findings show that Pak1 deletion does not impede the skeletal muscle hypertrophy magnitude in response to Myostatin inhibition. Therefore, Pak1 is permissive for the skeletal muscle mass increase caused by Myostatin inhibition.
引用
收藏
页数:13
相关论文
共 46 条
[1]   The effects of a soluble activin type IIB receptor on obesity and insulin sensitivity [J].
Akpan, I. ;
Goncalves, M. D. ;
Dhir, R. ;
Yin, X. ;
Pistilli, E. E. ;
Bogdanovich, S. ;
Khurana, T. S. ;
Ucran, J. ;
Lachey, J. ;
Ahima, R. S. .
INTERNATIONAL JOURNAL OF OBESITY, 2009, 33 (11) :1265-1273
[2]   p21-activated kinase regulates mast cell degranulation via effects on calcium mobilization and cytoskeletal dynamics [J].
Allen, Jayme D. ;
Jaffer, Zahara M. ;
Park, Su-Jung ;
Burgin, Sarah ;
Hofmann, Clemens ;
Sells, Mary Ann ;
Chen, Shi ;
Derr-Yellin, Ethel ;
Michels, Elizabeth G. ;
McDaniel, Andrew ;
Bessler, Waylan K. ;
Ingram, David A. ;
Atkinson, Simon J. ;
Travers, Jeffrey B. ;
Chernoff, Jonathan ;
Clapp, D. Wade .
BLOOD, 2009, 113 (12) :2695-2705
[3]   Comparative Proteomic and Transcriptomic Analysis of Follistatin-Induced Skeletal Muscle Hypertrophy [J].
Barbe, Caroline ;
Bray, Fabrice ;
Gueugneau, Marine ;
Deyassine, Stephanie ;
Lause, Pascale ;
Tokarski, Caroline ;
Rolando, Christian ;
Thissen, Jean-Paul .
JOURNAL OF PROTEOME RESEARCH, 2017, 16 (10) :3477-3490
[4]   Role of IGF-I in follistatin-induced skeletal muscle hypertrophy [J].
Barbe, Caroline ;
Kalista, Stephanie ;
Loumaye, Audrey ;
Ritvos, Olli ;
Lause, Pascale ;
Ferracin, Benjamin ;
Thissen, Jean-Paul .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2015, 309 (06) :E557-E567
[5]   Plasmid DNA electrotransfer for intracellular and secreted proteins expression: new methodological developments and applications [J].
Bloquel, C ;
Fabre, E ;
Bureau, MF ;
Scherman, D .
JOURNAL OF GENE MEDICINE, 2004, 6 :S11-S23
[6]   Biology of the p21-activated kinases [J].
Bokoch, GM .
ANNUAL REVIEW OF BIOCHEMISTRY, 2003, 72 :743-781
[7]   Myostatin blockage using actRIIB antagonism in mice bearing the Lewis lung carcinoma results in the improvement of muscle wasting and physical performance [J].
Busquets, Silvia ;
Toledo, Miriam ;
Orpi, Marcel ;
Massa, David ;
Porta, Maria ;
Capdevila, Eva ;
Padilla, Nuria ;
Frailis, Valentina ;
Lopez-Soriano, Francisco J. ;
Han, H. Q. ;
Argiles, Josep M. .
JOURNAL OF CACHEXIA SARCOPENIA AND MUSCLE, 2012, 3 (01) :37-43
[8]   Administration of a soluble activin type IIB receptor promotes skeletal muscle growth independent of fiber type [J].
Cadena, Samuel M. ;
Tomkinson, Kathleen N. ;
Monnell, Travis E. ;
Spaits, Matthew S. ;
Kumar, Ravindra ;
Underwood, Kathryn W. ;
Pearsall, R. Scott ;
Lachey, Jennifer L. .
JOURNAL OF APPLIED PHYSIOLOGY, 2010, 109 (03) :635-642
[9]   Molecular profiles of Quadriceps muscle in myostatin-null mice reveal PI3K and apoptotic pathways as myostatin targets [J].
Chelh, Ilham ;
Meunier, Bruno ;
Picard, Brigitte ;
Reecy, Mark James ;
Chevalier, Catherine ;
Hocquette, Jean-Francois ;
Cassar-Malek, Isabelle .
BMC GENOMICS, 2009, 10
[10]   Local overexpression of the myostatin propeptide increases glucose transporter expression and enhances skeletal muscle glucose disposal [J].
Cleasby, M. E. ;
Jarmin, S. ;
Eilers, W. ;
Elashry, M. ;
Andersen, D. K. ;
Dickson, G. ;
Foster, K. .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2014, 306 (07) :E814-E823