Solution structure of p53 core domain: Structural basis for its instability

核磁共振波谱 氢键 晶体结构 化学 蛋白质结构 结晶学 不稳定性 分子动力学 领域(数学分析) 立体化学 分子 生物化学 计算化学 物理 有机化学 机械 数学分析 数学
作者
José Manuel Pérez‐Cañadillas,Henning Tidow,Stefan M.V. Freund,Trevor J. Rutherford,Hwee Ching Ang,Alan R. Fersht
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:103 (7): 2109-2114 被引量:171
标识
DOI:10.1073/pnas.0510941103
摘要

The 25-kDa core domain of the tumor suppressor p53 is inherently unstable and melts at just above body temperature, which makes it susceptible to oncogenic mutations that inactivate it by lowering its stability. We determined its structure in solution using state-of-the-art isotopic labeling techniques and NMR spectroscopy to complement its crystal structure. The structure was very similar to that in the crystal but far more mobile than expected. Importantly, we were able to analyze by NMR the structural environment of several buried polar groups, which indicated structural reasons for the instability. NMR spectroscopy, with its ability to detect protons, located buried hydroxyl and sulfhydryl groups that form suboptimal hydrogen-bond networks. We mutated one such buried pair, Tyr-236 and Thr-253 to Phe-236 and Ile-253 (as found in the paralogs p63 and p73), and stabilized p53 by 1.6 kcal/mol. We also detected differences in the conformation of a mobile loop that might reflect the existence of physiologically relevant alternative conformations. The effects of temperature on the dynamics of aromatic residues indicated that the protein also experiences several dynamic processes that might be related to the presence of alternative hydrogen-bond patterns in the protein interior. p53 appears to have evolved to be dynamic and unstable.
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