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结构、能量和动力响应的天然状态集合的葡萄球菌核酸酶对腔创建突变。

Structural, energetic, and dynamic responses of the native state ensemble of staphylococcal nuclease to cavity-creating mutations.

机构信息

Centre de Biochimie Structurale, INSERM U1054, CNRS UMR 5048, Universités de Montpellier, France.

出版信息

Proteins. 2013 Jun;81(6):1069-80. doi: 10.1002/prot.24231. Epub 2013 Apr 27.

DOI:10.1002/prot.24231
PMID:23239146
Abstract

The effects of cavity-creating mutations on the structural flexibility, local and global stability, and dynamics of the folded state of staphylococcal nuclease (SNase) were examined with NMR spectroscopy, MD simulations, H/D exchange, and pressure perturbation. Effects on global thermodynamic stability correlated well with the number of heavy atoms in the vicinity of the mutated residue. Variants with substitutions in the C-terminal domain and the interface between α and β subdomains showed large amide chemical shift variations relative to the parent protein, moderate, widespread, and compensatory perturbations of the H/D protection factors and increased local dynamics on a nanosecond time scale. The pressure sensitivity of the folded states of these variants was similar to that of the parent protein. Such observations point to the capacity of the folded proteins to adjust to packing defects in these regions. In contrast, cavity creation in the β-barrel subdomain led to minimal perturbation of the structure of the folded state, However, significant pressure dependence of the native state amide resonances, along with strong effects on native state H/D exchange are consistent with increased probability of population of excited state(s) for these variants. Such contrasted responses to the creation of cavities could not be anticipated from global thermodynamic stability or crystal structures; they depend on the local structural and energetic context of the substitutions.

摘要

利用 NMR 光谱、MD 模拟、H/D 交换和压力扰动研究了腔形成突变对枯草溶菌素(SNase)折叠状态的结构灵活性、局部和整体稳定性以及动力学的影响。全局热力学稳定性的影响与突变残基附近的重原子数量很好地相关。与母体蛋白相比,在 C 末端结构域和 α 和 β 亚结构域之间的界面发生取代的变体显示出较大的酰胺化学位移变化,中度、广泛且补偿性的 H/D 保护因子变化以及增加的局部动力学在纳秒时间尺度上。这些变体折叠状态的压力敏感性与母体蛋白相似。这些观察结果表明折叠蛋白有能力适应这些区域的包装缺陷。相比之下,在β-桶亚结构域中形成腔导致折叠状态的结构只有最小的扰动。然而,天然状态酰胺共振的显著压力依赖性,以及对天然状态 H/D 交换的强烈影响,与这些变体中激发态(s)的出现概率增加一致。这些对腔形成的反应与全局热力学稳定性或晶体结构不一致;它们取决于取代的局部结构和能量背景。

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