Wang Y, Schnegelsberg P N, Dausman J, Jaenisch R
Whitehead Institute for Biomedical Research, Massachusetts Institute of Technology, Cambridge, MA 02142, USA.
Nature. 1996 Feb 29;379(6568):823-5. doi: 10.1038/379823a0.
The myogenic basic helix-loop-helix transcription factors, Myf5, MyoD, myogenin and MRF4, play key roles in skeletal muscle development. All of them induce myogenic differentiation in cultured non-muscle cells, suggesting that they might be functionally redundant. But the genes are expressed at different times during embryogenesis and mice carrying a mutation in any of the genes have different phenotypes. A rib cage defect was observed in Myf5-deficient mice, which die perinatally. We investigated whether the rib cage defect was due to the failure of the early activation of the gene or to the unique interactions of Myf5 with specific downstream targets. For this we inserted a myogenin complementary DNA into the Myf5 locus by homologous recombination which simultaneously disrupted Myf5 function. We report here that mice homozygous for this myogenin gene knock-in (ki) developed a normal rib cage and were viable, therefore demonstrating functional redundancy of Myf5 and myogenin for rib formation.
生肌碱性螺旋-环-螺旋转录因子Myf5、MyoD、肌细胞生成素和MRF4在骨骼肌发育中起关键作用。它们都能在培养的非肌肉细胞中诱导生肌分化,这表明它们在功能上可能是冗余的。但这些基因在胚胎发育过程中的表达时间不同,并且携带任何一个基因突变的小鼠都有不同的表型。在Myf5基因缺陷的小鼠中观察到肋骨笼缺陷,这些小鼠在围产期死亡。我们研究了肋骨笼缺陷是由于该基因早期激活失败还是由于Myf5与特定下游靶点的独特相互作用所致。为此,我们通过同源重组将一个肌细胞生成素互补DNA插入Myf5基因座,这同时破坏了Myf5的功能。我们在此报告,这种肌细胞生成素基因敲入(ki)纯合的小鼠发育出正常的肋骨笼并且存活,因此证明了Myf5和肌细胞生成素在肋骨形成方面的功能冗余。