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首页> 外文期刊>Molecular and Cellular Biology >Expression of E1A in terminally differentiated muscle cells reactivates the cell cycle and suppresses tissue-specific genes by separable mechanisms.
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Expression of E1A in terminally differentiated muscle cells reactivates the cell cycle and suppresses tissue-specific genes by separable mechanisms.

机译:E1A在终末分化的肌肉细胞中的表达通过可分离的机制重新激活细胞周期并抑制组织特异性基因。

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摘要

Terminally differentiated cells are characterized by permanent withdrawal from the cell cycle; they do not enter S phase even when stimulated by growth factors or retroviral oncogenes. We have shown, however, that the adenovirus E1A oncogene can reactivate the cell cycle in terminally differentiated cells. In this report, we describe the molecular events triggered by E1A in terminally differentiated skeletal muscle cells. We found that in myotubes infected with the adenovirus mutant dl520, 12S E1A bypasses the early G1 phase and activates the expression of late-G1 genes, such as the cyclin E and cyclin A genes, cdk2, PCNA, and B-myb. Of these, the cyclin E gene and cdk2 were significantly overexpressed in comparison with levels in proliferating, undifferentiated myoblasts. p130 and pRb were phosphorylated before the infected myotubes entered S phase, despite the high expression of the cyclin-dependent kinase inhibitor p21, and E2F was released. Our results suggest that one of the mechanisms that E1A uses to overcome the proliferative block of terminally differentiated cells involves coordinated overexpression of cyclin E and cdk2. Following E1A expression, the myogenic transcription factors MyoD and myogenin and the muscle-specific structural genes encoding muscle creatine kinase and myosin heavy chain were downregulated. The muscle regulatory factors were also silenced in myotubes infected with adenovirus E1A mutants incapable of reactivating the cell cycle in terminally differentiated muscle cells. Thus, the suppression of the differentiation program is not a consequence of cell cycle reactivation in myotubes, and it is induced by an independent mechanism. Our results show that E1A reactivates the cell cycle and suppresses tissue-specific gene expression in terminally differentiated muscle cells, thus causing dedifferentiation.
机译:终末分化细胞的特征是永久退出细胞周期。即使受到生长因子或逆转录病毒致癌基因的刺激,它们也不会进入S期。然而,我们已经表明,腺病毒E1A癌基因可以在终末分化细胞中重新激活细胞周期。在这份报告中,我们描述了由E1A触发的终末分化骨骼肌细胞中的分子事件。我们发现,在感染了腺病毒突变体dl520的肌管中,12S E1A绕过了早期G1期,并激活了晚期G1基因的表达,例如cyclin E和cyclin A基因,cdk2,PCNA和B-myb。其中,与增殖的未分化成肌细胞的水平相比,细胞周期蛋白E基因和cdk2明显过表达。尽管细胞周期蛋白依赖性激酶抑制剂p21的高表达,但在感染的肌管进入S期之前,p130和pRb被磷酸化,并且E2F被释放。我们的结果表明,E1A用于克服终末分化细胞增殖阻滞的机制之一涉及细胞周期蛋白E和cdk2的协同过度表达。 E1A表达后,肌源性转录因子MyoD和肌生成素以及编码肌肉肌酸激酶和肌球蛋白重链的肌肉特异性结构基因被下调。在腺病毒E1A突变体感染的肌管中,肌肉调节因子也被沉默,这些突变体无法激活终末分化的肌肉细胞中的细胞周期。因此,分化程序的抑制不是肌管中细胞周期重新激活的结果,而是由独立的机制诱导的。我们的结果表明,E1A重新激活细胞周期并抑制终末分化肌肉细胞中组织特异性基因的表达,从而引起去分化。

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