Weinberg Richard L, Freund Stefan M V, Veprintsev Dmitry B, Bycroft Mark, Fersht Alan R
Cambridge University Chemical Laboratory and Cambridge Centre for Protein Engineering, Medical Research Council Centre, Hills Road, Cambridge CB2 2QH, UK.
J Mol Biol. 2004 Sep 17;342(3):801-11. doi: 10.1016/j.jmb.2004.07.042.
The tumor suppressor p53 is a tetrameric multi-domain transcription factor. Its C-terminal domain is thought to regulate the binding of its core domain to specific recognition sequences in promoters. The mechanism of regulation by the C-terminal domain and the role of its post-translational modification are controversial. We have examined the binding of DNA in solution to a series of unmodified p53 constructs that lack various domains. The specific DNA sequences bind tightly to the core domain, irrespective of whether or not the C-terminal domain is part of the construct. Unmodified p53 is accordingly an active DNA binding protein. Non-specific DNA sequences do not inhibit directly the binding of the specific sequences to the core but bind to the C terminus and inhibit p53 via that binding mode. Using NMR, we identified the residues of the C terminus that interact with the non-specific DNA. They include residues that are known to be modified post-translationally. Our data provide direct support for the regulatory role of the C terminus in the activity of p53 and show that p53 containing the unmodified C terminus actively binds to short double-stranded DNA.
肿瘤抑制因子p53是一种四聚体多结构域转录因子。其C端结构域被认为可调节其核心结构域与启动子中特定识别序列的结合。C端结构域的调节机制及其翻译后修饰的作用存在争议。我们研究了溶液中DNA与一系列缺少不同结构域的未修饰p53构建体的结合情况。特定的DNA序列紧密结合到核心结构域,无论C端结构域是否是构建体的一部分。因此,未修饰的p53是一种活性DNA结合蛋白。非特异性DNA序列不会直接抑制特异性序列与核心的结合,但会结合到C端并通过该结合模式抑制p53。利用核磁共振技术,我们确定了C端与非特异性DNA相互作用的残基。它们包括已知会发生翻译后修饰的残基。我们的数据为C端在p53活性中的调节作用提供了直接支持,并表明含有未修饰C端的p53能主动结合短双链DNA。