Berghella Libera, De Angelis Luciana, De Buysscher Tristan, Mortazavi Ali, Biressi Stefano, Forcales Sonia V, Sirabella Dario, Cossu Giulio, Wold Barbara J
Institute of Cell Biology and Tissue Engineering, San Raffaele Biomedical Science Park, Rome 00128, Italy.
Genes Dev. 2008 Aug 1;22(15):2125-38. doi: 10.1101/gad.468508.
Myogenin is the dominant transcriptional regulator of embryonic and fetal muscle differentiation and during maturation is profoundly down-regulated. We show that a highly conserved 17-bp DNA cis-acting sequence element located upstream of the myogenin promoter (myogHCE) is essential for postnatal repression of myogenin in transgenic animals. We present multiple lines of evidence supporting the idea that repression is mediated by the Y-box protein MSY-3. Electroporation in vivo shows that myogHCE and MSY-3 are required for postnatal repression. We further show that, in the C2C12 cell culture system, ectopic MSY-3 can repress differentiation, while reduced MSY-3 promotes premature differentiation. MSY-3 binds myogHCE simultaneously with the homeodomain protein Pbx in postnatal innervated muscle. We therefore propose a model in which the myogHCE motif operates as a switch by specifying opposing functions; one that was shown previously is regulated by MyoD and Pbx and it specifies a chromatin opening, gene-activating function at the time myoblasts begin to differentiate; the other includes MYS-3 and Pbx, and it specifies a repression function that operates during and after postnatal muscle maturation in vivo and in myoblasts before they begin to differentiate.
生肌调节因子是胚胎和胎儿肌肉分化过程中的主要转录调节因子,在成熟过程中其表达会大幅下调。我们发现,位于生肌调节因子启动子上游的一个高度保守的17碱基对DNA顺式作用序列元件(myogHCE)对于转基因动物出生后抑制生肌调节因子至关重要。我们提供了多条证据支持这样一种观点,即这种抑制作用是由Y盒蛋白MSY-3介导的。体内电穿孔实验表明,出生后抑制作用需要myogHCE和MSY-3。我们进一步表明,在C2C12细胞培养系统中,异位表达的MSY-3能够抑制分化,而MSY-3表达降低则会促进过早分化。在出生后有神经支配的肌肉中,MSY-3与同源结构域蛋白Pbx同时结合myogHCE。因此,我们提出了一个模型,其中myogHCE基序通过指定相反的功能发挥开关作用;一种功能如先前所示,受MyoD和Pbx调控,在成肌细胞开始分化时指定一种染色质开放、基因激活功能;另一种功能包括MYS-3和Pbx,它指定一种抑制功能,在出生后肌肉成熟期间及之后在体内发挥作用,在成肌细胞开始分化之前也在成肌细胞中发挥作用。