Literature DB >> 29876588

The regulation of skeletal muscle fiber-type composition by betaine is associated with NFATc1/MyoD.

Jingjing Du1, Linyuan Shen1, Peiwen Zhang1, Zhendong Tan1, Xiao Cheng1, Jia Luo1, Xue Zhao1, Qiong Yang2, Hao Gu1, An'an Jiang1, Jideng Ma1, Qianzi Tang1, Long Jin1, Surong Shuai1, Mingzhou Li1, Yanzhi Jiang3, Guoqing Tang1, Lin Bai1, Xuewei Li1, Jinyong Wang4, Shunhua Zhang5, Li Zhu6.   

Abstract

Increasing evidence indicates that muscular dysfunction or alterations in skeletal muscle fiber-type composition not only are involved in muscle metabolism and function but also can limit functional capacity. Therefore, understanding the mechanisms regulating key events during skeletal myogenesis is necessary. Betaine is a naturally occurring component of commonly eaten foods. Here, we showed that 10 mM betaine supplementation in vitro significantly repressed myoblast proliferation and enhanced myoblast differentiation. This effect can be mediated by regulation of miR-29b-3p. Further analysis showed that betaine supplementation in vitro regulated skeletal muscle fiber-type composition through the induction of NFATc1 and the negative regulation of MyoD expression. Furthermore, mice fed with 10 mM betaine in water for 133 days showed no impairment in overall health. Consistently, betaine supplementation increased muscle mass, promoted muscle formation, and modulated the ratio of fiber types in skeletal muscle in vivo. These findings shed light on the diverse biological functions of betaine and indicate that betaine supplementation may lead to new therapies for diseases such as muscular dystrophy or other diseases related to muscle dysfunction. KEY MESSAGES: Betaine supplementation inhibits proliferation and promotes differentiation of C2C12 myoblasts. Betaine supplementation regulates fast to slow muscle fiber-type conversion and is associated with NFATc1/MyoD. Betaine supplementation enhances skeletal myogenesis in vivo. Betaine supplementation does not impair health of mice.

Entities:  

Keywords:  Betaine; Differentiation; Muscle fiber type; MyoD; NFATc1; Proliferation

Mesh:

Substances:

Year:  2018        PMID: 29876588     DOI: 10.1007/s00109-018-1657-2

Source DB:  PubMed          Journal:  J Mol Med (Berl)        ISSN: 0946-2716            Impact factor:   4.599


  70 in total

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