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RING指结构域在MDM2构象和活性变构调控中的作用。

A function for the RING finger domain in the allosteric control of MDM2 conformation and activity.

作者信息

Wawrzynow Bartosz, Pettersson Susanne, Zylicz Alicja, Bramham Janice, Worrall Erin, Hupp Ted R, Ball Kathryn L

机构信息

Cancer Research UK (CRUK) Interferon and Cell Signalling Group, University of Edinburgh, Crewe Road South, Edinburgh EH4 2SR, Scotland, United Kingdom.

出版信息

J Biol Chem. 2009 Apr 24;284(17):11517-30. doi: 10.1074/jbc.M809294200. Epub 2009 Feb 2.

Abstract

The MDM2 oncoprotein plays multiple regulatory roles in the control of p53-dependent gene expression. A picture of MDM2 is emerging where structurally discrete but interdependent functional domains are linked through changes in conformation. The domain structure includes: (i) a hydrophobic pocket at the N terminus of MDM2 that is involved in both its transrepressor and E3-ubiqutin ligase functions, (ii) a central acid domain that recognizes a ubiquitination signal in the core DNA binding domain of p53, and (iii) a C-terminal C2H2C4 RING finger domain that is required for E2 enzyme-binding and ATP-dependent molecular chaperone activity. Here we show that the binding affinity of MDM2s hydrophobic pocket can be regulated through the RING finger domain and that increases in pocket affinity are reflected by a gain in MDM2 transrepressor activity. Thus, mutations within the RING domain that affect zinc coordination, but not one that inhibits ATP binding, produce MDM2 proteins that have a higher affinity for the BOX-I transactivation domain of p53 and a reduced I(0.5) for p53 transrepression. An allosteric model for regulation of the hydrophobic pocket is supported by differences in protein conformation and pocket accessibility between wild-type and the RING domain mutant MDM2 proteins. Additionally the data demonstrate that the complex relationship between different domains of MDM2 can impact on the efficacy of anticancer drugs directed toward its hydrophobic pocket.

摘要

MDM2癌蛋白在p53依赖性基因表达的调控中发挥多种调节作用。一幅关于MDM2的图景正在浮现,即结构上离散但相互依存的功能域通过构象变化相互联系。该结构域结构包括:(i)MDM2 N端的一个疏水口袋,其参与转录抑制和E3泛素连接酶功能;(ii)一个中央酸性结构域,其识别p53核心DNA结合结构域中的泛素化信号;(iii)一个C端C2H2C4 锌指结构域,其是E2酶结合和ATP依赖性分子伴侣活性所必需的。我们在此表明,MDM2疏水口袋的结合亲和力可通过锌指结构域进行调节,口袋亲和力的增加反映为MDM2转录抑制活性的增强。因此,影响锌配位但不抑制ATP结合的锌指结构域内的突变产生的MDM2蛋白,对p53的BOX-I反式激活结构域具有更高的亲和力,且对p53转录抑制的I(0.5)降低。野生型和锌指结构域突变型MDM2蛋白之间的蛋白质构象和口袋可及性差异支持了疏水口袋调节的变构模型。此外,数据表明MDM2不同结构域之间的复杂关系会影响针对其疏水口袋的抗癌药物的疗效。

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