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绵羊大规模成肌细胞融合过程中关键分子事件的鉴定

Identification of the crucial molecular events during the large-scale myoblast fusion in sheep.

作者信息

Wei Caihong, Li Li, Su Hongwei, Xu Lingyang, Lu Jian, Zhang Li, Liu Wenzhong, Ren Hangxing, Du Lixin

机构信息

National Center for Molecular Genetics and Breeding of Animal, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, China;

National Center for Molecular Genetics and Breeding of Animal, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, China; College of Animal Science and Technology, Sichuan Agricultural University, Ya'an, Sichuan, China; and.

出版信息

Physiol Genomics. 2014 Jun 15;46(12):429-40. doi: 10.1152/physiolgenomics.00184.2013. Epub 2014 May 1.

Abstract

It is well known that in sheep most myofibers are formed before birth; however, the crucial myogenic stage and the cellular and molecular mechanisms underpinning phenotypic variation of fetal muscle development remain to be ascertained. We used histological, microarray, and quantitative real-time PCR (qPCR) methods to examine the developmental characteristics of fetal muscle at 70, 85, 100, 120, and 135 days of gestation in sheep. We show that day 100 is an important checkpoint for change in muscle transcriptome and histomorphology in fetal sheep and that the period of 85-100 days is the vital developmental stage for large-scale myoblast fusion. Furthermore, we identified the cis-regulatory motifs for E2F1 or MEF2A in a list of decreasingly or increasingly expressed genes between 85 and 100 days, respectively. Further analysis demonstrated that the mRNA and phosphorylated protein levels of E2F1 and MEF2A significantly declined with myogenic progression in vivo and in vitro. qRT-PCR analysis indicated that PI3K and FST, as targets of E2F1, may be involved in myoblast differentiation and fusion and that downregulation of MEF2A contributes to transition of myofiber types by differential regulation of the target genes involved at the stage of 85-100 days. We clarify for the first time the timing of myofiber proliferation and development during gestation in sheep, which would be beneficial to meat sheep production. Our findings present a repertoire of gene expression in muscle during large-scale myoblast fusion at transcriptome-wide level, which contributes to elucidate the regulatory network of myogenic differentiation.

摘要

众所周知,绵羊的大多数肌纤维在出生前就已形成;然而,关键的生肌阶段以及胎儿肌肉发育表型变异的细胞和分子机制仍有待确定。我们使用组织学、微阵列和定量实时PCR(qPCR)方法,研究了绵羊妊娠70、85、100、120和135天时胎儿肌肉的发育特征。我们发现,第100天是胎儿绵羊肌肉转录组和组织形态发生变化的重要检查点,85 - 100天是成肌细胞大规模融合的关键发育阶段。此外,我们分别在85至100天之间表达逐渐降低或升高的基因列表中,鉴定出了E2F1或MEF2A的顺式调控基序。进一步分析表明,E2F1和MEF2A的mRNA和磷酸化蛋白水平在体内和体外随着生肌进程显著下降。qRT-PCR分析表明,作为E2F1靶标的PI3K和FST可能参与成肌细胞的分化和融合,并且MEF2A的下调通过对85 - 100天阶段相关靶基因的差异调控,促成肌纤维类型的转变。我们首次阐明了绵羊妊娠期肌纤维增殖和发育的时间,这将有利于肉羊生产。我们的研究结果展示了转录组水平上大规模成肌细胞融合过程中肌肉基因表达的情况,有助于阐明生肌分化的调控网络。

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