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体内泛素结合酶UbcH5B/C对p53的调控

Regulation of p53 by the ubiquitin-conjugating enzymes UbcH5B/C in vivo.

作者信息

Saville Mark K, Sparks Alison, Xirodimas Dimitris P, Wardrop Julie, Stevenson Lauren F, Bourdon Jean-Christophe, Woods Yvonne L, Lane David P

机构信息

Cancer Research UK, Cell Transformation Research Group, Department of Surgery and Molecular Oncology, Ninewells Hospital and Medical School, University of Dundee, Dundee DD1 9SY, Scotland, UK.

出版信息

J Biol Chem. 2004 Oct 1;279(40):42169-81. doi: 10.1074/jbc.M403362200. Epub 2004 Jul 26.

Abstract

p53 levels are regulated by ubiquitination and 26 S proteasome-mediated degradation. p53 is a substrate for the E3 ligase Mdm2, however, the ubiquitin-conjugating enzymes (E2s) involved in p53 ubiquitination in intact cells have not been defined previously. To investigate the E2 specificity of Mdm2 we carried out an in vitro screen using a panel of ubiquitin E2s. Of the E2s tested only UbcH5A, -B, and -C and E2-25K support Mdm2-mediated ubiquitination of p53. The same E2s also support Mdm2 auto-ubiquitination. Small interfering RNA-mediated knockdown of UbcH5B/C causes accumulation of Mdm2 and p53 in unstressed cells. We show that suppression of UbcH5B/C inhibits p53 ubiquitination and degradation. Despite up-regulating the level of nuclear p53, UbcH5B/C knockdown does not on its own result in an increase in p53 transcriptional activity or sensitize p53 to activation by the therapeutic drugs doxorubicin and actinomycin D. We provide evidence that Mdm2 is responsible, at least in part, for repression of the transcriptional activity of the accumulated p53. In MCF7 cells levels of UbcH5B/C are reduced by doxorubicin and actinomycin D. This observation and the sensitivity of p53 expression to levels of UbcH5B/C raise the possibility that E2 regulation could be involved in signaling pathways that control the stability of p53. Our data indicate that UbcH5B/C are physiological E2s for Mdm2, which make a significant contribution to the maintenance of low levels of p53 and Mdm2 in unstressed cells and that inhibition of p53 ubiquitination and degradation by targeting UbcH5B/C is not sufficient to up-regulate p53 transcriptional activity.

摘要

p53蛋白水平受泛素化作用以及26S蛋白酶体介导的降解过程调控。p53是E3连接酶Mdm2的底物,然而,完整细胞中参与p53泛素化的泛素结合酶(E2s)此前尚未明确。为了研究Mdm2的E2特异性,我们使用一组泛素E2s进行了体外筛选。在所测试的E2s中,只有UbcH5A、-B和-C以及E2-25K支持Mdm2介导的p53泛素化。同样的E2s也支持Mdm2自身的泛素化。小干扰RNA介导的UbcH5B/C敲低导致未受应激细胞中Mdm2和p53的积累。我们发现抑制UbcH5B/C会抑制p53的泛素化和降解。尽管上调了细胞核p53的水平,但UbcH5B/C敲低本身并不会导致p53转录活性增加,也不会使p53对治疗药物阿霉素和放线菌素D的激活敏感。我们提供的证据表明,Mdm2至少部分负责抑制积累的p53的转录活性。在MCF7细胞中,阿霉素和放线菌素D会降低UbcH5B/C的水平。这一观察结果以及p53表达对UbcH5B/C水平的敏感性增加了E2调节可能参与控制p53稳定性的信号通路的可能性。我们的数据表明,UbcH5B/C是Mdm2的生理性E2s,它们对维持未受应激细胞中低水平的p53和Mdm2有重要贡献,并且通过靶向UbcH5B/C抑制p53的泛素化和降解不足以上调p53的转录活性。

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