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高热稳定性以及缺乏协同性DNA结合特性,使得p63核心结构域有别于同源肿瘤抑制因子p53。

High thermostability and lack of cooperative DNA binding distinguish the p63 core domain from the homologous tumor suppressor p53.

作者信息

Klein C, Georges G, Künkele K P, Huber R, Engh R A, Hansen S

机构信息

Pharma Research, Roche Diagnostics GmbH, D-82372 Penzberg, Germany.

出版信息

J Biol Chem. 2001 Oct 5;276(40):37390-401. doi: 10.1074/jbc.M103801200. Epub 2001 Jul 26.

Abstract

The p53 protein is the major tumor suppressor in mammals. The discovery of the p53 homologs p63 and p73 defined a family of p53 members with distinct roles in tumor suppression, differentiation, and development. Here, we describe the biochemical characterization of the core DNA-binding domain of a human isoform of p63, p63-delta, and particularly novel features in comparison with p53. In contrast to p53, the free p63 core domain did not show specific binding to p53 DNA consensus sites. However, glutathione S-transferase-fused and thus dimerized p63 and p53 core domains had similar affinity and specificity for the p53 consensus sites p21, gadd45, cyclin G, and bax. Furthermore, the fold of p63 core was remarkably stable compared with p53 as judged by differential scanning calorimetry (T(m) = 61 degrees C versus 44 degrees C for p53) and equilibrium unfolding (urea = 5.2 m versus 3.1 m for p53). A homology model of p63 core highlights differences at a segment near the H1 helix hypothetically involved in the formation of the dimerization interface in p53, which might reduce cooperativity of p63 core DNA binding compared with p53. The model also shows differences in the electrostatic and hydrophobic potentials of the domains relevant to folding stability.

摘要

p53蛋白是哺乳动物中的主要肿瘤抑制因子。p53同源物p63和p73的发现定义了一个p53成员家族,它们在肿瘤抑制、分化和发育中具有不同的作用。在此,我们描述了人p63异构体p63-δ核心DNA结合结构域的生化特性,特别是与p53相比的新特征。与p53不同,游离的p63核心结构域未显示出与p53 DNA共有位点的特异性结合。然而,谷胱甘肽S-转移酶融合并因此二聚化的p63和p53核心结构域对p53共有位点p21、gadd45、细胞周期蛋白G和bax具有相似的亲和力和特异性。此外,通过差示扫描量热法判断(p53的Tm = 44℃,p63核心的Tm = 61℃)以及平衡去折叠(p53的尿素 = 3.1 m,p63核心的尿素 = 5.2 m),与p53相比,p63核心的折叠非常稳定。p63核心的同源模型突出了在H1螺旋附近的一个片段上的差异,该片段假设参与了p53中二聚化界面的形成,这可能会降低p63核心与DNA结合的协同性,与p5相比。该模型还显示了与折叠稳定性相关的结构域在静电和疏水势方面的差异。

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