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位于β折叠中的溶剂暴露残基调节p53四聚化结构域的稳定性——一种结构与组合方法。

Solvent-exposed residues located in the beta-sheet modulate the stability of the tetramerization domain of p53--a structural and combinatorial approach.

作者信息

Mora Puig, Carbajo Rodrigo J, Pineda-Lucena Antonio, Sánchez del Pino Manuel M, Pérez-Payá Enrique

机构信息

Department of Medicinal Chemistry, Centro de Investigación Príncipe Felipe, E-46013 Valencia, Spain.

出版信息

Proteins. 2008 Jun;71(4):1670-85. doi: 10.1002/prot.21854.

DOI:10.1002/prot.21854
PMID:18076077
Abstract

The role of hydrophobic amino acids in the formation of hydrophobic cores as one of the major driving forces in protein folding has been extensively studied. However, the implication of neutral solvent-exposed amino acids is less clear and available information is scarce. We have used a combinatorial approach to study the structural relevance of three solvent-exposed residues (Tyr(327), Thr(329), and Gln(331)) located in thebeta-sheet of the tetramerization domain of the tumor suppressor p53 (p53TD). A conformationally defined peptide library was designed where these three positions were randomized. The library was screened for tetramer stability. A set of p53TD mutants containing putative stabilizing or destabilizing residue combinations was synthesized for a thermodynamic characterization. Unfolding experiments showed a wide range of stabilities, with T(m) values between 27 and 83 degrees C. Wild type p53TD and some highly destabilized and stabilized mutants were further characterized. Thermodynamic and biophysical data indicated that these proteins were folded tetramers, with the same overall structure, in equilibrium with unfolded monomers. An NMR study confirmed that the main structural features of p53TD are conserved in all the mutants analyzed. The thermodynamic stability of the different p53TD mutants showed a strong correlation with parameters that favor formation and stabilization of the beta-sheet. We propose that stabilization through hydrophobic interactions of key secondary structure elements might be the underlying mechanism for the strong influence of solvent-exposed residues in the stability of p53TD.

摘要

疏水氨基酸在形成疏水核心作为蛋白质折叠的主要驱动力之一方面的作用已得到广泛研究。然而,中性溶剂暴露氨基酸的影响尚不清楚,且可用信息稀缺。我们采用组合方法研究了位于肿瘤抑制因子p53四聚化结构域(p53TD)β-折叠中的三个溶剂暴露残基(Tyr(327)、Thr(329)和Gln(331))的结构相关性。设计了一个构象定义的肽库,其中这三个位置是随机的。筛选该库以检测四聚体稳定性。合成了一组包含假定稳定或不稳定残基组合的p53TD突变体用于热力学表征。展开实验显示出广泛的稳定性,T(m)值在27至83摄氏度之间。对野生型p53TD和一些高度不稳定及稳定的突变体进行了进一步表征。热力学和生物物理数据表明这些蛋白质是折叠的四聚体,具有相同的整体结构,与未折叠的单体处于平衡状态。核磁共振研究证实p53TD的主要结构特征在所有分析的突变体中都是保守的。不同p53TD突变体的热力学稳定性与有利于β-折叠形成和稳定的参数显示出强烈相关性。我们提出通过关键二级结构元件的疏水相互作用实现稳定可能是溶剂暴露残基对p53TD稳定性产生强烈影响的潜在机制。

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