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不同类别人类p53突变体的特异性DNA结合

Specific DNA binding by different classes of human p53 mutants.

作者信息

Rolley N, Butcher S, Milner J

机构信息

Department of Biology, University of York, UK.

出版信息

Oncogene. 1995 Aug 17;11(4):763-70.

PMID:7651740
Abstract

The p53 protein is a multifunctional transcription factor which orchestrates cellular responses to DNA damage, so helping to conserve genomic stability. It may also regulate genes involved in intercellular signalling, such as thrombospondin, a negative regulator of angiogenesis and metastatic spread. Activation of p53 target genes requires sequence-specific DNA binding, a function which maps to the central core of the protein. Missense point mutations within this domain inactivate p53 tumour suppressor function and involve either (i) DNA contact residues, or (ii) residues important for conformational structure. Using in vitro techniques we have analysed seven DNA contact mutants and 17 structural mutants known to occur in cancer. We show that DNA contact mutants can be carried into specific DNA interaction when co-expressed with wild type protein. For structural mutants, 9/17 retained DNA binding capacity and, with one exception, DNA binding correlated with conformational flexibility of the mutant protein. The exception was Asp281, which appeared essential for DNA interaction, probably due to its ability to form salt bridges with DNA contact residues Arg273 and Arg280. We suggest that different classes of p53 mutant may prove amenable to different strategies for restoration of wild type tumour suppressor function as means of anti-cancer therapy.

摘要

p53蛋白是一种多功能转录因子,它协调细胞对DNA损伤的反应,从而有助于维持基因组稳定性。它还可能调节参与细胞间信号传导的基因,如血小板反应蛋白,一种血管生成和转移扩散的负调节因子。p53靶基因的激活需要序列特异性DNA结合,这一功能定位于该蛋白的中央核心区域。该结构域内的错义点突变会使p53肿瘤抑制功能失活,这些突变涉及(i)DNA接触残基,或(ii)对构象结构重要的残基。我们使用体外技术分析了已知在癌症中出现的7个DNA接触突变体和17个结构突变体。我们发现,DNA接触突变体与野生型蛋白共表达时可进行特异性DNA相互作用。对于结构突变体,17个中有9个保留了DNA结合能力,除一个例外,DNA结合与突变蛋白的构象灵活性相关。例外的是Asp281,它似乎对DNA相互作用至关重要,可能是由于它能够与DNA接触残基Arg273和Arg280形成盐桥。我们认为,不同类型的p53突变体可能适用于不同的恢复野生型肿瘤抑制功能的策略,作为抗癌治疗手段。

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