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[电离辐射后E1A+E1B-19kDa转化细胞中短暂G1/S期阻滞的分析]

[Analysis of transient G1/S arrest in E1A+E1B-19kDa transformed cells after ionizing radiation].

作者信息

Brichkina A I, Aksenov N D, Pospelov V A, Pospelova T V

机构信息

Institute of Cytology RAS, St. Petersburg.

出版信息

Tsitologiia. 2003;45(12):1203-10.

Abstract

Expression of human adenovirus type 5 E1A oncogene in normal rodent cells leads to disruption of the G1/S cell cycle arrest realization in response to DNA damage. It has been shown here that rat embryo fibroblasts transformed by E1Aad5 oncogene in complementation with E1B-19 kDa gene realize the irradiation-induced transient G1/S arrest, which depends on selective suppression of CyclinE-Cdk2 activity despite functional inactivation of p21Waf1 inhibitor. Inhibitor p21Waf1 is not revealed in complexes with cyclins E and A in E1A + E1B-19 kDa transformants, however, it is not due to p21Waf1 interaction with E1A oncoproteins, because the E1A-p21Waf1 complex formation in E1A + cHa-ras transformants does not prevent the high level of CycIE, A-p21Waf1 association. In the case of p21Waf1 inactivation, the main way of cyclin-kinase activity regulation in E1A + E1B-19 kDa cells may be Cdk2 phosphorylation. However, irradiation of E1A + E1B-19 kDa transformed cells induces no changes in CAK (Cdk7-associated) kinase activity and in the protein level of Cdc25A phosphatase, which are responsible for activating Thr160 phosphoralation and Tyr15 dephosphorylation on Cdk2. Using phospho-Tyr15-Cdk2 specific antibodies, no increase of phosphorylation at Tyr15 position on immunoprecipitated Cdk2 was detected after irradiation. It seems likely that in the case of inactivated inhibitor p21Waf1 the transient G1/S block after irradiation in E1A + E1B-19 kDa transformants depends on suppression of Cycl-E-Cdk2 activity caused by inhibition of Thr160 Cdk2 phosphorylation, but his occurs with the involvement of other kinases rather than CAK.

摘要

人5型腺病毒E1A癌基因在正常啮齿动物细胞中的表达会导致细胞对DNA损伤做出反应时,G1/S细胞周期停滞的实现受到破坏。本文已表明,由E1Aad5癌基因与E1B - 19 kDa基因互补转化的大鼠胚胎成纤维细胞实现了辐射诱导的短暂G1/S停滞,这取决于对细胞周期蛋白E - Cdk2活性的选择性抑制,尽管p21Waf1抑制剂功能失活。在E1A + E1B - 19 kDa转化体中,未在细胞周期蛋白E和A的复合物中检测到抑制剂p21Waf1,然而,这并非由于p21Waf1与E1A癌蛋白相互作用,因为在E1A + cHa - ras转化体中E1A - p21Waf1复合物的形成并未阻止高水平的细胞周期蛋白E、A - p21Waf1结合。在p21Waf1失活的情况下,E1A + E1B - 19 kDa细胞中细胞周期蛋白激酶活性调节的主要方式可能是Cdk2磷酸化。然而,E1A + E1B - 19 kDa转化细胞的辐射并未诱导CAK(与Cdk7相关)激酶活性以及负责激活Cdk2上Thr160磷酸化和Tyr15去磷酸化的Cdc25A磷酸酶蛋白水平发生变化。使用磷酸化Tyr15 - Cdk2特异性抗体,辐射后未检测到免疫沉淀的Cdk2在Tyr15位置的磷酸化增加。似乎在抑制剂p21Waf1失活的情况下,E1A + E1B - 19 kDa转化体辐射后的短暂G1/S阻滞取决于由Thr160 Cdk2磷酸化抑制引起的细胞周期蛋白E - Cdk2活性抑制,但这是由其他激酶而非CAK参与实现的。

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