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PHD3 通过羟化 p53 蛋白第 359 位脯氨酸来调节其稳定性。

PHD3 Regulates p53 Protein Stability by Hydroxylating Proline 359.

机构信息

Systems Biology Ireland, University College Dublin, Dublin 4, Ireland; Cancer Research UK Edinburgh Centre, IGMM, University of Edinburgh, Edinburgh EH4 2XR, UK.

Systems Biology Ireland, University College Dublin, Dublin 4, Ireland.

出版信息

Cell Rep. 2018 Jul 31;24(5):1316-1329. doi: 10.1016/j.celrep.2018.06.108.

Abstract

Cellular p53 protein levels are regulated by a ubiquitination/de-ubiquitination cycle that can target the protein for proteasomal destruction. The ubiquitination reaction is catalyzed by a multitude of ligases, whereas the removal of ubiquitin chains is mediated by two deubiquitinating enzymes (DUBs), USP7 (HAUSP) and USP10. Here, we show that PHD3 hydroxylates p53 at proline 359, a residue that is in the p53-DUB binding domain. Hydroxylation of p53 upon proline 359 regulates its interaction with USP7 and USP10, and its inhibition decreases the association of p53 with USP7/USP10, increases p53 ubiquitination, and rapidly reduces p53 protein levels independently of mRNA expression. Our results show that p53 is a PHD3 substrate and that hydroxylation by PHD3 regulates p53 protein stability through modulation of ubiquitination.

摘要

细胞 p53 蛋白水平受泛素化/去泛素化循环调控,该循环可使蛋白质被蛋白酶体破坏。泛素化反应由多种连接酶催化,而泛素链的去除则由两种去泛素化酶(DUBs)USP7(HAUSP)和 USP10 介导。在这里,我们表明 PHD3 在 p53 的脯氨酸 359 位羟基化,该残基位于 p53-DUB 结合域内。p53 在脯氨酸 359 位的羟基化调节其与 USP7 和 USP10 的相互作用,其抑制作用降低了 p53 与 USP7/USP10 的结合,增加了 p53 的泛素化,并迅速降低了 p53 蛋白水平,而不依赖于 mRNA 表达。我们的结果表明,p53 是 PHD3 的底物,而 PHD3 通过调节泛素化来调节 p53 蛋白稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4369/6088137/d86e05bbcfed/fx1.jpg

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