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Evidence for a molten globule-like transition state in protein folding from determination of activation volumes.

机译:确定活化体积后蛋白质折叠中出现熔融小球状过渡态的证据。

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摘要

One of the most important, yet elusive, aspects of the protein folding question lies in the nature of the transition state. Direct information about the structural properties of the transition state can be obtained from determination of the activation volumes for the folding and unfolding transitions. The present pressure-jump relaxation study on the folding/unfolding of staphylococcal nuclease reveals that the volume of the protein-solvent system is larger in the transition state than in either the folded or unfolded states. Moreover, the activation volume of folding is much larger than that of unfolding. These results support a molten globule-like model for the transition state of nuclease in which the polypeptide chain is in a collapsed, loosely packed, solvent-excluded structure. In this model, hydrophobic collapse with concomitant desolvation is the rate-limiting step in the folding of the polypeptide chain, and solvent-excluded expansion of the folded state is the rate-limiting step in protein unfolding.
机译:蛋白质折叠问题最重要但仍难以捉摸的方面之一在于过渡态的性质。关于过渡状态的结构特性的直接信息可以从折叠和展开过渡的激活体积的确定中获得。当前对葡萄球菌核酸酶折叠/展开的压力跳跃松弛研究表明,在过渡状态下蛋白质-溶剂系统的体积大于折叠状态或未折叠状态。而且,折叠的激活体积比展开的激活体积大得多。这些结果支持了核酸酶过渡状态的熔融小球状模型,其中多肽链处于折叠,松散堆积,溶剂排除的结构中。在该模型中,伴随着去溶剂化的疏水性塌陷是多肽链折叠中的限速步骤,而溶剂排除的折叠状态扩展是蛋白质展开中的限速步骤。

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