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快速折叠之前,冷休克蛋白会迅速折叠成两种状态。

Rapid collapse precedes the fast two-state folding of the cold shock protein.

作者信息

Magg Christine, Schmid Franz X

机构信息

Laboratorium für Biochemie und Bayreuther Zentrum für Molekulare Biowissenschaften, Universität Bayreuth, D-95440 Bayreuth, Germany.

出版信息

J Mol Biol. 2004 Jan 30;335(5):1309-23. doi: 10.1016/j.jmb.2003.11.050.

DOI:10.1016/j.jmb.2003.11.050
PMID:14729346
Abstract

The cold shock protein Bc-Csp folds very rapidly in a reaction that is well described by a kinetic two-state mechanism without intermediates. We measured the shortening of six intra-protein distances during folding by Förster resonance energy transfer (FRET) in combination with stopped-flow experiments. Single tryptophan residues were engineered into the protein as the donors, and single 5-(((acetylamino)ethyl)amino)naphthalene-1-sulfonate (AEDANS) residues were placed as the acceptors at solvent-exposed sites of Bc-Csp. Their R0 value of about 22 A was well suited for following distance changes during the folding of this protein with a high sensitivity. The mutagenesis and the labeling did not alter the refolding kinetics. The changes in energy transfer during folding were monitored by both donor and acceptor emission and reciprocal effects were found. In two cases the donor-acceptor distances were similar in the unfolded and the folded state and, as a consequence, the kinetic changes in energy transfer upon folding were very small. For four donor/acceptor pairs we found that > or =50% of the increase in energy transfer upon folding occurred prior to the rate-limiting step of folding. This reveals that about half of the shortening of the intra-molecular distances upon folding has occurred already before the rate-limiting step and suggests that the fast two-state folding reaction of Bc-Csp is preceded by a very rapid collapse.

摘要

冷休克蛋白Bc-Csp在一个无中间体的动力学双态机制能很好描述的反应中折叠得非常迅速。我们通过福斯特共振能量转移(FRET)结合停流实验测量了折叠过程中六个蛋白质内部距离的缩短。将单个色氨酸残基工程化引入蛋白质作为供体,并将单个5-(((乙酰氨基)乙基)氨基)萘-1-磺酸盐(AEDANS)残基作为受体放置在Bc-Csp的溶剂暴露位点。它们约22埃的R0值非常适合以高灵敏度跟踪该蛋白质折叠过程中的距离变化。诱变和标记并未改变重折叠动力学。通过供体和受体发射监测折叠过程中的能量转移变化,并发现了相互影响。在两种情况下,未折叠态和折叠态的供体-受体距离相似,因此,折叠时能量转移的动力学变化非常小。对于四对供体/受体,我们发现折叠时能量转移增加的≥50%发生在折叠的限速步骤之前。这表明折叠时分子内距离缩短的大约一半在限速步骤之前就已经发生,并且表明Bc-Csp的快速双态折叠反应之前有一个非常迅速的折叠前塌陷。

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