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与分离的核心结构域相比,常见癌症突变对全长p53稳定性和DNA结合的影响。

Effects of common cancer mutations on stability and DNA binding of full-length p53 compared with isolated core domains.

作者信息

Ang Hwee Ching, Joerger Andreas C, Mayer Sebastian, Fersht Alan R

机构信息

Centre for Protein Engineering, Medical Research Council Centre, Hills Road, Cambridge CB2 2QH, United Kingdom.

Centre for Protein Engineering, Medical Research Council Centre, Hills Road, Cambridge CB2 2QH, United Kingdom.

出版信息

J Biol Chem. 2006 Aug 4;281(31):21934-21941. doi: 10.1074/jbc.M604209200. Epub 2006 Jun 5.

Abstract

Common cancer mutations of p53 tend either to lower the stability or distort the core domain of the protein or weaken its DNA binding affinity. We have previously analyzed in vitro the effects of mutations on the core domain of p53. Here, we extend those measurements to full-length p53, using either the wild-type protein or a biologically active superstable construct that is more amenable to accurate biophysical measurements to assess the possibilities of rescuing different types of mutations by anticancer drugs. The tetrameric full-length proteins had similar apparent melting temperatures to those of the individual domains, and the structural mutations lowered the melting temperature by similar amounts. The thermodynamic stability of tetrameric p53 is thus dictated by its core domain. We determined that the common contact mutation R273H weakened binding to the gadd45 recognition sequence by approximately 700-1000 times. Many mutants that have lowered melting temperatures should be good drug targets, although the common R273H mutant binds response elements too weakly for simple rescue.

摘要

p53常见的癌症突变往往会降低蛋白质的稳定性、扭曲其核心结构域或削弱其与DNA的结合亲和力。我们之前已经在体外分析了突变对p53核心结构域的影响。在此,我们将这些测量扩展到全长p53,使用野生型蛋白或更适合精确生物物理测量的生物活性超稳定构建体,以评估抗癌药物挽救不同类型突变的可能性。四聚体全长蛋白的表观解链温度与各个结构域的相似,结构突变使解链温度降低的幅度相似。因此,四聚体p53的热力学稳定性由其核心结构域决定。我们确定常见的接触突变R273H使与gadd45识别序列的结合减弱了约700 - 1000倍。许多解链温度降低的突变体应该是良好的药物靶点,尽管常见的R273H突变体与反应元件的结合过于微弱,难以简单地挽救。

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