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酪氨酸99位点的磷酸化决定了肿瘤抑制因子p73的调控环境。

Tyr99 phosphorylation determines the regulatory milieu of tumor suppressor p73.

作者信息

Satija Y K, Das S

机构信息

Molecular Oncology Laboratory, National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi, India.

出版信息

Oncogene. 2016 Jan 28;35(4):513-27. doi: 10.1038/onc.2015.111. Epub 2015 Apr 20.

Abstract

p73 is a member of the p53 tumor suppressor family, which mediates genotoxic stress response by triggering cell cycle arrest and apoptosis. Similar to p53, p73 is maintained at very low levels, but it gets rapidly induced upon genotoxic stress. Mounting evidences demonstrate that p73 is primarily regulated posttranslationally. However, the molecular mechanisms which determine its stability and activity discerningly under normal and stress conditions are still not well understood. Here, we employed a proteomics approach to identify differential interactors of p73 under normal and genotoxic stress conditions. We report here that TRIM28, an E3 ligase, interacts with p73 and targets it for proteasomal degradation under normal conditions. Genotoxic stress-induced phosphorylation of p73 at tyrosine 99 residue by c-abl kinase leads to abrogation of this interaction thereby promoting p73 stabilization. Furthermore, the phosphorylated form of p73 specifically interacts with MED15, which serves as a transcriptional coactivator and leads to activation of proarrest, proapoptotic and anti-metastatic genes. RNAi-mediated abrogation of TRIM28 expression facilitates p73-mediated tumor suppression in mouse tumor models, whereas disruption of MED15 expression abrogates p73 tumor suppressor and anti-metastatic functions. These findings provide new insights into the pivotal role of Tyr99 phosphorylation in determining p73 levels and functions.

摘要

p73是p53肿瘤抑制家族的成员,它通过触发细胞周期停滞和凋亡来介导基因毒性应激反应。与p53相似,p73的表达水平维持在很低的水平,但在基因毒性应激下会迅速被诱导。越来越多的证据表明,p73主要在翻译后水平受到调控。然而,在正常和应激条件下精确决定其稳定性和活性的分子机制仍未完全清楚。在此,我们采用蛋白质组学方法来鉴定p73在正常和基因毒性应激条件下的差异相互作用蛋白。我们在此报告,E3连接酶TRIM28在正常条件下与p73相互作用,并将其靶向蛋白酶体降解。基因毒性应激诱导c-abl激酶使p73的酪氨酸99位点磷酸化,导致这种相互作用被消除,从而促进p73的稳定。此外,磷酸化形式的p73特异性地与MED15相互作用,MED15作为转录共激活因子,导致细胞周期停滞、促凋亡和抗转移基因的激活。RNA干扰介导的TRIM28表达缺失促进了p73在小鼠肿瘤模型中介导的肿瘤抑制作用,而MED15表达缺失则消除了p73的肿瘤抑制和抗转移功能。这些发现为酪氨酸99磷酸化在决定p73水平和功能方面的关键作用提供了新见解。

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