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肌肉和神经元分化过程中转录因子E2F复合物的特征分析

Characterization of transcription factor E2F complexes during muscle and neuronal differentiation.

作者信息

Corbeil H B, Whyte P, Branton P E

机构信息

Department of Biochemistry, McGill University, Montréal, Québec, Canada.

出版信息

Oncogene. 1995 Sep 7;11(5):909-20.

PMID:7675450
Abstract

The activities of E2F transcription factors are inhibited by interactions with members of the retinoblastoma (RB) tumor suppressor family, p105RB, p107 and p130. In cycling cells p107 and p130 also interact with heterodimers comprised of Cdk2 and either A or E cyclins. We characterized E2F complexes present in C2C12 and P19 mouse cells induced to differentiate into muscle and neuronal cells, respectively. In both undifferentiated C2C12 and P19 cells, in addition to free species, E2F was found in complexes containing p107 or p130 and Cdk2. No E2F-pRB complexes were detected by electrophoretic mobility shift assays even though such cells were shown to contain pRB and E2F species capable of interacting in vitro. These results suggested that although present, pRB was unable to interact with E2F. Following differentiation of C2C12 cells into myotubes, E2F was present in at least two complexes which contained p130, but not in those containing p107 or Cdk2. Low levels of E2F-pRB complexes were also detected in fully differentiated C2C12 myotubes and in freshly isolated skeletal muscle. In the case of differentiated P19 neuronal cells, E2F was found in complexes containing pRB, p107 and p130. However, such cells may not be representative of fully differentiated neurons, as studies with rodent brain extracts indicated that only pRB-E2F complexes and those recognized by a p130-specific serum were present. These results suggested that in both muscle and neurons, pRB and p130 may play specific roles in the development or maintenance of terminal differentiation.

摘要

E2F转录因子的活性通过与视网膜母细胞瘤(RB)肿瘤抑制家族成员p105RB、p107和p130相互作用而受到抑制。在循环细胞中,p107和p130还与由Cdk2和A或E细胞周期蛋白组成的异二聚体相互作用。我们对分别诱导分化为肌肉细胞和神经细胞的C2C12和P19小鼠细胞中存在的E2F复合物进行了表征。在未分化的C2C12和P19细胞中,除了游离形式外,还在含有p107或p130以及Cdk2的复合物中发现了E2F。尽管这些细胞显示含有能够在体外相互作用的pRB和E2F,但通过电泳迁移率变动分析未检测到E2F-pRB复合物。这些结果表明,尽管pRB存在,但它无法与E2F相互作用。C2C12细胞分化为肌管后,E2F存在于至少两种含有p130的复合物中,但不存在于含有p107或Cdk2的复合物中。在完全分化的C2C12肌管和新鲜分离的骨骼肌中也检测到了低水平的E2F-pRB复合物。对于分化的P19神经细胞,在含有pRB、p107和p130的复合物中发现了E2F。然而,这些细胞可能不代表完全分化的神经元,因为对啮齿动物脑提取物的研究表明,仅存在pRB-EZ复合物和被p130特异性血清识别的复合物。这些结果表明,在肌肉和神经元中,pRB和p130可能在终末分化的发育或维持中发挥特定作用。

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