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通过多位点荧光共振能量转移测量剖析巴氏星状体初始折叠反应的非特异性和特异性成分。

Dissecting the non-specific and specific components of the initial folding reaction of barstar by multi-site FRET measurements.

作者信息

Sinha Kalyan K, Udgaonkar Jayant B

机构信息

National Centre for Biological Sciences, Tata Institute of Fundamental Research, UAS-GKVK Campus, Bangalore 560065, India.

出版信息

J Mol Biol. 2007 Jul 6;370(2):385-405. doi: 10.1016/j.jmb.2007.04.061. Epub 2007 Apr 27.

Abstract

Initial polypeptide chain collapse plays a major role in the development of subsequent structure during protein folding, but it has been difficult to elucidate the coupling between its cooperativity and specificity. To better understand this important aspect of protein folding, nine different intramolecular distances in the protein have been measured by fluorescence resonance energy transfer (FRET) in the product(s) of the initial, sub-millisecond collapse reaction during the folding of barstar, under different folding conditions. All nine distances contract in these initial folding products, when the denaturant concentration is reduced. Two of these distances were also measured in peptides corresponding to sequence segments 38-55 and 51-69 of the protein. Surprisingly, both distances do not contract in the peptides which remain fully unfolded when the denaturant concentration is reduced. This suggests that the contraction of at least some segments of the polypeptide chain may be facilitated only by contraction of other segments. In the case of the initial product of folding of the protein, the dependence on denaturant concentration of the relative change in each distance suggests that there are two components to the initial folding reaction. One is a nonspecific component, which appears to be driven by the change in denaturant concentration that is used to initiate refolding. This component corresponds to the collapse of completely unfolded protein (U) to unfolded protein in refolding conditions (U(C)). The extent of nonspecific collapse can be predicted by the response of completely unfolded protein to a change in denaturant concentration. All distances undergo such solvent-induced contraction, but each distance contracts to a different extent. There is also a specific component to initial sub-millisecond folding, in which some distances (but not all) contract more than that predicted by solvent-induced contraction. The observation that only some of the distances undergo contraction over and above solvent-induced contraction, suggest that this specific component is associated with the formation of a specific intermediate (I(E)). FRET efficiency and distance change differently for the different donor-acceptor pairs, with a change in denaturant concentration, indicating that the formation or dissolution of structure in U(C) and I(E) does not happen in a synchronized manner across different regions of the protein molecule. Also, all nine FRET efficiencies and intramolecular distances in the product(s) of sub-ms folding, change continuously with a change in denaturant concentration. Hence, it appears that the transitions from U to U(C) and to I(E) are gradual transformations, and not all-or-none structural transitions. Nevertheless, the product of these gradual transitions, I(E), possesses specific structure.

摘要

初始多肽链折叠在蛋白质折叠过程中后续结构的形成中起主要作用,但阐明其协同性与特异性之间的耦合一直很困难。为了更好地理解蛋白质折叠的这一重要方面,在不同折叠条件下,通过荧光共振能量转移(FRET)测量了巴司他丁折叠过程中初始亚毫秒级折叠反应产物中蛋白质的九个不同分子内距离。当变性剂浓度降低时,所有九个距离在这些初始折叠产物中都会收缩。还在与该蛋白质的38 - 55和51 - 69序列段相对应的肽段中测量了其中两个距离。令人惊讶的是,当变性剂浓度降低时,这两个距离在仍完全未折叠的肽段中并未收缩。这表明多肽链至少某些片段的收缩可能仅由其他片段的收缩促进。对于该蛋白质折叠的初始产物,每个距离相对变化对变性剂浓度的依赖性表明初始折叠反应有两个组分。一个是非特异性组分,它似乎是由用于引发重折叠的变性剂浓度变化驱动的。该组分对应于完全未折叠的蛋白质(U)在重折叠条件下向未折叠蛋白质(U(C))的折叠。非特异性折叠的程度可以通过完全未折叠蛋白质对变性剂浓度变化的响应来预测。所有距离都会经历这种溶剂诱导的收缩,但每个距离收缩的程度不同。初始亚毫秒级折叠还有一个特异性组分,其中一些距离(但不是全部)收缩程度超过溶剂诱导收缩所预测的程度。只有一些距离在溶剂诱导收缩之外还经历收缩这一观察结果表明,这个特异性组分与特定中间体(I(E))的形成有关。对于不同的供体 - 受体对,随着变性剂浓度的变化,FRET效率和距离变化不同,这表明U(C)和I(E)中结构的形成或溶解并非在蛋白质分子的不同区域同步发生。此外,亚毫秒级折叠产物中的所有九个FRET效率和分子内距离都随着变性剂浓度的变化而连续变化。因此,从U到U(C)再到I(E)的转变似乎是渐进的转变,而不是全或无的结构转变。然而,这些渐进转变的产物I(E)具有特定结构。

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