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蛋白质水合与去折叠——来自实验偏比容和去折叠蛋白质模型的见解

Protein hydration and unfolding--insights from experimental partial specific volumes and unfolded protein models.

作者信息

Murphy L R, Matubayasi N, Payne V A, Levy R M

机构信息

Department of Chemistry, Rutgers, State University of New Jersey, Piscataway 08855, USA.

出版信息

Fold Des. 1998;3(2):105-18. doi: 10.1016/S1359-0278(98)00016-9.

Abstract

BACKGROUND

The partial specific volume of a protein is an experimental quantity containing information about solute-solvent interactions and protein hydration. We use a hydration-shell model to partition the partial specific volume into an intrinsic volume occupied by the protein and a change in the volume occupied by the solvent resulting from the solvent interactions with the protein. We seek to extract microscopic information about protein hydration and unfolding from experimental volume measurements without using computer simulations. We employ the idea that the protein-solvent interaction will be proportional to the surface area of the protein.

RESULTS

A linear relationship is obtained when the difference between the experimental protein partial specific volume and its intrinsic volume is plotted as a function of the protein solvent-accessible surface area. The effect of using different protein volume definitions on the analysis of protein volumetric properties is discussed. Volumetric data are used to test a model for the unfolded state of proteins and to make predictions about the denatured state.

CONCLUSIONS

The linear relationship between hydration-shell volume change and accessible surface area reflects the similar surface properties (fractional composition of nonpolar, polar and charged surface) among a diverse set of proteins. This linear relationship is found to be independent of how the solution is partitioned into solute and solvent components. The interpretation of hydration shell versus bulk water properties is found to be very model dependent, however. The maximally exposed unfolded protein model is found to be inconsistent with experimental volume changes of unfolding.

摘要

背景

蛋白质的偏比容是一个实验量,包含有关溶质 - 溶剂相互作用和蛋白质水合作用的信息。我们使用水合壳模型将偏比容划分为蛋白质占据的固有体积以及由于溶剂与蛋白质相互作用导致的溶剂占据体积的变化。我们试图从实验体积测量中提取有关蛋白质水合作用和展开的微观信息,而不使用计算机模拟。我们采用蛋白质 - 溶剂相互作用将与蛋白质表面积成正比的观点。

结果

当将实验测得的蛋白质偏比容与其固有体积之间的差值作为蛋白质溶剂可及表面积的函数进行绘制时,得到了线性关系。讨论了使用不同蛋白质体积定义对蛋白质体积性质分析的影响。体积数据用于测试蛋白质未折叠状态的模型,并对变性状态进行预测。

结论

水合壳体积变化与可及表面积之间的线性关系反映了多种蛋白质之间相似的表面性质(非极性、极性和带电表面的分数组成)。发现这种线性关系与溶液如何划分为溶质和溶剂成分无关。然而,发现水合壳与 bulk 水性质的解释非常依赖于模型。发现最大暴露未折叠蛋白质模型与展开的实验体积变化不一致。

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