Id-1通过在有丝分裂期间响应微管破坏而修饰后期促进复合物/细胞周期体(APC/C)的活性来促进染色体不稳定。

Id-1 promotes chromosomal instability through modification of APC/C activity during mitosis in response to microtubule disruption.

作者信息

Wang X, Di K, Zhang X, Han H Y, Wong Y C, Leung S C L, Ling M-T

机构信息

Cancer Biology Group, Department of Anatomy, Faculty of Medicine, The University of Hong Kong, Hong Kong SAR, China.

出版信息

Oncogene. 2008 Jul 24;27(32):4456-66. doi: 10.1038/onc.2008.87. Epub 2008 Mar 31.

Abstract

Id-1 (Inhibitor of DNA binding/differential-1) plays a positive role in tumorigenesis through regulation of multiple signaling pathways. Recently, it is suggested that upregulation of Id-1 in cancer cells promotes chromosomal instability. However, the underlying molecular mechanism is not known. In this study, we report a novel function of Id-1 in regulation of mitosis through physical interaction with Cdc20 (cell division cycle protein 20) and Cdh1 (Cdc20 homolog 1). During early mitosis, Id-1 interacts with Cdc20 and RASSF1A (Ras association domain family 1A), leading to enhanced APC(Cdc20) activity, which in turn promotes cyclin B1/securin degradation and premature mitosis. During late mitosis, Id-1 binds to Cdh1 and disrupts the interaction between Cdh1 and APC, resulting in suppression of APC(Cdh1) activity. On the other hand, overexpression of Cdh1 leads to Id-1 protein degradation, suggesting that Id-1 may also act as a substrate of APC(Cdh1). The negative effect of Id-1 on APC(Cdh1) results in suppression of APC(Cdh1)-induced Aurora A and Cdc20 degradation, leading to failure in cytokinesis. As a result, overexpression of Id-1 in human prostate epithelial cells leads to polyploidy in response to microtubule disruption, and this effect is abolished when Id-1 expression is suppressed using antisense technology. These results demonstrate a novel function of Id-1 in promoting chromosomal instability through modification of APC/C activity during mitosis and provide a novel molecular mechanism accounted for the function of Id-1 as an oncogene.

摘要

Id-1(DNA结合/分化抑制因子1)通过调控多种信号通路在肿瘤发生过程中发挥积极作用。最近,有研究表明癌细胞中Id-1的上调会促进染色体不稳定。然而,其潜在的分子机制尚不清楚。在本研究中,我们报道了Id-1通过与Cdc20(细胞分裂周期蛋白20)和Cdh1(Cdc20同源物1)发生物理相互作用来调控有丝分裂的新功能。在有丝分裂早期,Id-1与Cdc20和RASSF1A(Ras关联结构域家族1A)相互作用,导致APC(Cdc20)活性增强,进而促进细胞周期蛋白B1/分离酶降解并导致有丝分裂提前。在有丝分裂后期,Id-1与Cdh1结合并破坏Cdh1与APC之间的相互作用,导致APC(Cdh1)活性受到抑制。另一方面,Cdh1的过表达会导致Id-1蛋白降解,这表明Id-1可能也是APC(Cdh1)的底物。Id-1对APC(Cdh1)的负面影响导致对APC(Cdh1)诱导的极光激酶A和Cdc20降解的抑制,从而导致胞质分裂失败。因此,在人前列腺上皮细胞中过表达Id-1会导致对微管破坏产生多倍体反应,而当使用反义技术抑制Id-1表达时,这种效应就会消失。这些结果证明了Id-1在有丝分裂期间通过改变APC/C活性促进染色体不稳定的新功能,并为Id-1作为癌基因的功能提供了一种新的分子机制。

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