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在小鼠胚胎发育过程中,肌细胞生成素的功能与肌分化抗原或肌因子5的功能并不重叠。

Myogenin's functions do not overlap with those of MyoD or Myf-5 during mouse embryogenesis.

作者信息

Rawls A, Morris J H, Rudnicki M, Braun T, Arnold H H, Klein W H, Olson E N

机构信息

Department of Biochemistry and Molecular Biology, University of Texas M.D. Anderson Cancer Center, Houston 77030, USA.

出版信息

Dev Biol. 1995 Nov;172(1):37-50. doi: 10.1006/dbio.1995.0004.

Abstract

The four myogenic basic helix-loop-helix proteins, MyoD, myogenin, Myf-5, and MRF4, can each activate skeletal muscle differentiation when introduced into nonmuscle cells. During embryogenesis, each of these genes is expressed in a unique but overlapping pattern in skeletal muscle precursors and their descendants. Gene knockout experiments have shown that MyoD and Myf-5 play seemingly redundant roles in the generation of myoblasts. However, the role of either of these genes during differentiation in vivo has not been determined. In contrast, a myogenin-null mutation blocks differentiation and results in a dramatic decrease in muscle fiber formation, yet the role of myogenin in the generation or maintenance of myoblast populations is not known. Because myogenin possesses the same myogenic activity as MyoD and Myf-5 in vitro and the expression patterns of these three genes overlap in vivo, we sought to determine if myogenin shares certain functions with either MyoD or Myf-5 in vivo. We therefore generated mice with double homozygous null mutations in the genes encoding MyoD and myogenin or Myf-5 and myogenin. These mice showed embryonic and perinatal phenotypes characteristic of the combined defects observed in mice mutant for each gene alone. As shown by histological analysis and expression of muscle-specific genes, the numbers of undifferentiated myoblasts and residual myofibers were comparable between myogenin-mutant homozygotes and the double-mutant homozygotes. Myoblasts isolated from neonates of the combined mutant genotypes underwent myogenesis in tissue culture, indicating that no more than two of the four myogenic factors are required to support muscle differentiation. These results demonstrate that the functions of myogenin do not overlap with those of MyoD or Myf-5 and support the view that myogenin acts in a genetic pathway downstream of MyoD and Myf-5.

摘要

四种生肌碱性螺旋-环-螺旋蛋白,即肌分化抗原(MyoD)、肌细胞生成素、肌因子5(Myf-5)和肌肉调节因子4(MRF4),当被导入非肌肉细胞时,每一种都能激活骨骼肌分化。在胚胎发育过程中,这些基因中的每一个在骨骼肌前体细胞及其后代中都以独特但重叠的模式表达。基因敲除实验表明,MyoD和Myf-5在成肌细胞的产生中似乎起着冗余作用。然而,这些基因中的任何一个在体内分化过程中的作用尚未确定。相比之下,肌细胞生成素基因缺失突变会阻断分化,并导致肌纤维形成显著减少,但肌细胞生成素在成肌细胞群体的产生或维持中的作用尚不清楚。由于肌细胞生成素在体外具有与MyoD和Myf-5相同的生肌活性,且这三个基因的表达模式在体内重叠,我们试图确定肌细胞生成素在体内是否与MyoD或Myf-5共享某些功能。因此,我们构建了在编码MyoD和肌细胞生成素或Myf-5和肌细胞生成素的基因中具有双纯合缺失突变的小鼠。这些小鼠表现出胚胎期和围生期表型,其特征是在单独针对每个基因的突变小鼠中观察到的联合缺陷。组织学分析和肌肉特异性基因的表达表明,未分化的成肌细胞数量和残留肌纤维数量在肌细胞生成素突变纯合子和双突变纯合子之间相当。从联合突变基因型的新生小鼠中分离出的成肌细胞在组织培养中发生了肌生成,这表明在支持肌肉分化方面,四种生肌因子中不超过两种是必需的。这些结果表明,肌细胞生成素的功能与MyoD或Myf-5的功能不重叠,并支持肌细胞生成素在MyoD和Myf-5下游的遗传途径中起作用的观点。

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