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通过热变性和化学位移扰动研究霍夫迈斯特阴离子对蛋白质稳定性的影响。

Influence of the Hofmeister anions on protein stability as studied by thermal denaturation and chemical shift perturbation.

作者信息

Tadeo Xavier, Pons Miquel, Millet Oscar

机构信息

Structural Biology Unit, CIC bioGUNE, Bizkaia Technology Park, Building 801A, 48160 Derio, Spain.

出版信息

Biochemistry. 2007 Jan 23;46(3):917-23. doi: 10.1021/bi0613426.

Abstract

The influence of external cosolutes on the thermal stability of the B1 domain of protein L (ProtL) has been studied by circular dichroism, fluorescence spectroscopy, and differential scanning calorimetry. The thermal denaturation midpoint is effectively modulated by the addition of a suite of anions and follows the Hofmeister series. The maximum increase in thermostability (corresponding to 14 degrees C) was observed in the presence of 1 M sodium sulfate. After conversion of the experimental data into the change in the virial coefficient, a mechanistic model was used to estimate the relative contributions from excluded volume and preferential anion solvation for each anion. As expected, the excluded volume term stabilizes the native conformation of ProtL for all the cosolutes, but opposite effects on protein stability arise from the anion's solvation depending on their tendency to interact with or to become excluded from the protein surface. This behavior is in agreement with the results of independent NMR experiments: the anions that strongly interact with the protein surface produce significant perturbations in the amide protein chemical shift (delta d23(HN)). A correlation obtained between delta d23(HN) and the temperature coefficients for the different amide protons provides qualitative information about the structural determinants for the interaction between the protein surface and the cosolute.

摘要

通过圆二色性、荧光光谱和差示扫描量热法研究了外部共溶质对蛋白质L(ProtL)B1结构域热稳定性的影响。热变性中点通过添加一系列阴离子得到有效调节,并遵循霍夫迈斯特序列。在1 M硫酸钠存在下观察到热稳定性的最大增加(相当于14摄氏度)。将实验数据转换为维里系数的变化后,使用一个机理模型来估计每种阴离子的排除体积和优先阴离子溶剂化的相对贡献。正如预期的那样,对于所有共溶质,排除体积项稳定了ProtL的天然构象,但阴离子溶剂化对蛋白质稳定性产生了相反的影响,这取决于它们与蛋白质表面相互作用或被排除在蛋白质表面之外的倾向。这种行为与独立的核磁共振实验结果一致:与蛋白质表面强烈相互作用的阴离子会在酰胺蛋白质化学位移(δd23(HN))中产生显著扰动。不同酰胺质子的δd23(HN)与温度系数之间的相关性提供了关于蛋白质表面与共溶质相互作用的结构决定因素的定性信息。

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