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干燥的熔融球蛋白中间体和蛋白质变性的机制。

Dry molten globule intermediates and the mechanism of protein unfolding.

机构信息

Department of Biochemistry, Stanford University Medical Center, Beckman Center, School of Medicine, Stanford, California 94305-5307, USA.

出版信息

Proteins. 2010 Oct;78(13):2725-37. doi: 10.1002/prot.22803.

Abstract

New experimental results show that either gain or loss of close packing can be observed as a discrete step in protein folding or unfolding reactions. This finding poses a significant challenge to the conventional two-state model of protein folding. Results of interest involve dry molten globule (DMG) intermediates, an expanded form of the protein that lacks appreciable solvent. When an unfolding protein expands to the DMG state, side chains unlock and gain conformational entropy, while liquid-like van der Waals interactions persist. Four unrelated proteins are now known to form DMGs as the first step of unfolding, suggesting that such an intermediate may well be commonplace in both folding and unfolding. Data from the literature show that peptide amide protons are protected in the DMG, indicating that backbone structure is intact despite loss of side-chain close packing. Other complementary evidence shows that secondary structure formation provides a major source of compaction during folding. In our model, the major free-energy barrier separating unfolded from native states usually occurs during the transition between the unfolded state and the DMG. The absence of close packing at this barrier provides an explanation for why phi-values, derived from a Brønsted-Leffler plot, depend primarily on structure at the mutational site and not on specific side-chain interactions. The conventional two-state folding model breaks down when there are DMG intermediates, a realization that has major implications for future experimental work on the mechanism of protein folding.

摘要

新的实验结果表明,在蛋白质折叠或展开反应中,可以观察到紧密堆积的增加或损失是一个离散的步骤。这一发现对蛋白质折叠的传统两态模型提出了重大挑战。相关结果涉及干燥熔融球(DMG)中间体,这是蛋白质的一种扩展形式,几乎没有溶剂。当折叠的蛋白质展开到 DMG 状态时,侧链解锁并获得构象熵,而类似液体的范德华相互作用仍然存在。现在已知有四种不相关的蛋白质形成 DMG 作为展开的第一步,这表明这种中间体在折叠和展开中可能很常见。文献中的数据表明,肽酰胺质子在 DMG 中受到保护,这表明尽管失去了侧链紧密堆积,但骨架结构仍然完整。其他互补证据表明,二级结构的形成是折叠过程中压缩的主要来源。在我们的模型中,将展开状态与天然状态分开的主要自由能障碍通常发生在展开状态和 DMG 之间的转变过程中。在这个障碍处没有紧密堆积,这解释了为什么 phi 值,从 Brønsted-Leffler 图中得出,主要取决于突变部位的结构,而不是特定的侧链相互作用。当存在 DMG 中间体时,传统的两态折叠模型就会失效,这一认识对未来蛋白质折叠机制的实验工作具有重大意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac6f/2927783/cb8188770349/nihms-219436-f0001.jpg

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