Literature DB >> 16793037

Myostatin regulation of muscle development: molecular basis, natural mutations, physiopathological aspects.

Dominique Joulia-Ekaza1, Joulia-Ekaza Dominique, Gérard Cabello, Cabello Gérard.   

Abstract

Since its identification in 1997, myostatin has been considered as a novel and unique negative regulator of muscle growth, as mstn-/- mice display a dramatic and widespread increase in skeletal muscle mass. Myostatin also appears to be involved in muscle homeostasis in adults as its expression is regulated during muscle atrophy. Moreover, deletion of the myostatin gene seems to affect adipose tissue mass in addition to skeletal muscle mass. Natural myostatin gene mutations occur in cattle breeds such as Belgian Blue, exhibiting an obviously increased muscle mass, but also in humans, as has recently been demonstrated. Here we review these natural mutations and their associated phenotypes as well as the physiological influence of the alterations in myostatin expression and the physiopathological consequences of changes in myostatin expression, especially with regard to satellite cells. Interestingly, studies have demonstrated some rescue effects of myostatin in muscular pathologies such as myopathies, providing a novel pharmacological strategy for treatment. Furthermore, the myostatin pathway is now better understood thanks to in vitro studies and it consists of inhibition of myoblast progression in the cell cycle, inhibition of myoblast terminal differentiation, in both cases associated to protection from apoptosis. The molecular pathway driving the myogenic myostatin influence is currently under extensive study and many molecular partners of myostatin have been identified, suggesting novel potent muscle growth enhancers for both human and agricultural applications.

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Year:  2006        PMID: 16793037     DOI: 10.1016/j.yexcr.2006.04.012

Source DB:  PubMed          Journal:  Exp Cell Res        ISSN: 0014-4827            Impact factor:   3.905


  55 in total

1.  Organization and functional analysis of the 5' flanking regions of myostatin-1 and 2 genes from Larimichthys crocea.

Authors:  Liangyi Xue; Xiaojing Dong; Xiaoju Zhang; Amadou Diallo
Journal:  DNA Cell Biol       Date:  2011-12-07       Impact factor: 3.311

2.  Muscle plasticity in hibernating ground squirrels (Spermophilus lateralis) is induced by seasonal, but not low-temperature, mechanisms.

Authors:  Megan M Nowell; Hyung Choi; Bryan C Rourke
Journal:  J Comp Physiol B       Date:  2010-08-12       Impact factor: 2.200

3.  Inhibition of activin receptor type IIB increases strength and lifespan in myotubularin-deficient mice.

Authors:  Michael W Lawlor; Benjamin P Read; Rachel Edelstein; Nicole Yang; Christopher R Pierson; Matthew J Stein; Ariana Wermer-Colan; Anna Buj-Bello; Jennifer L Lachey; Jasbir S Seehra; Alan H Beggs
Journal:  Am J Pathol       Date:  2011-02       Impact factor: 4.307

4.  The influence of eccentric exercise on mRNA expression of skeletal muscle regulators.

Authors:  Nicole E Jensky; Jennifer K Sims; Judd C Rice; Hans C Dreyer; E Todd Schroeder
Journal:  Eur J Appl Physiol       Date:  2007-07-28       Impact factor: 3.078

5.  Treatment with ActRIIB-mFc Produces Myofiber Growth and Improves Lifespan in the Acta1 H40Y Murine Model of Nemaline Myopathy.

Authors:  Jennifer Tinklenberg; Hui Meng; Lin Yang; Fujun Liu; Raymond G Hoffmann; Mahua Dasgupta; Kenneth P Allen; Alan H Beggs; Edna C Hardeman; R Scott Pearsall; Robert H Fitts; Michael W Lawlor
Journal:  Am J Pathol       Date:  2016-04-18       Impact factor: 4.307

6.  Molecular characterization of myostatin from the skeletal muscle of the African lungfish, Protopterus annectens, and changes in its mRNA and protein expression levels during three phases of aestivation.

Authors:  Jasmine L Y Ong; You R Chng; Biyun Ching; Xiu L Chen; Kum C Hiong; Wai P Wong; Shit F Chew; Yuen K Ip
Journal:  J Comp Physiol B       Date:  2017-02-09       Impact factor: 2.200

7.  Cytotoxic aggregation and amyloid formation by the myostatin precursor protein.

Authors:  Carlene S Starck; Andrew J Sutherland-Smith
Journal:  PLoS One       Date:  2010-02-11       Impact factor: 3.240

8.  L6E9 myoblasts are deficient of myostatin and additional TGF-beta members are candidates to developmentally control their fiber formation.

Authors:  Stefania Rossi; Elena Stoppani; Massimiliano Gobbo; Anna Caroli; Alessandro Fanzani
Journal:  J Biomed Biotechnol       Date:  2010-04-13

9.  Analysis of horse myostatin gene and identification of single nucleotide polymorphisms in breeds of different morphological types.

Authors:  Stefania Dall'Olio; Luca Fontanesi; Leonardo Nanni Costa; Marco Tassinari; Laura Minieri; Adalberto Falaschini
Journal:  J Biomed Biotechnol       Date:  2010-07-14

10.  Molecular profiles of Quadriceps muscle in myostatin-null mice reveal PI3K and apoptotic pathways as myostatin targets.

Authors:  Ilham Chelh; Bruno Meunier; Brigitte Picard; Mark James Reecy; Catherine Chevalier; Jean-François Hocquette; Isabelle Cassar-Malek
Journal:  BMC Genomics       Date:  2009-04-27       Impact factor: 3.969

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