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通过脉冲氢交换测量核糖核酸酶A展开过程中氢键断裂的动力学。

Kinetics of hydrogen bond breakage in the process of unfolding of ribonuclease A measured by pulsed hydrogen exchange.

作者信息

Kiefhaber T, Baldwin R L

机构信息

Department of Biochemistry, Stanford Medical Center, CA 94305-5307, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Mar 28;92(7):2657-61. doi: 10.1073/pnas.92.7.2657.

Abstract

A sensitive test for kinetic unfolding intermediates in ribonuclease A (EC 3.1.27.5) is performed under conditions where the enzyme unfolds slowly (10 degrees C, pH 8.0, 4.5 M guanidinium chloride). Exchange of peptide NH protons (2H-1H) is used to monitor structural opening of individual hydrogen bonds during unfolding, and kinetic models are developed for hydrogen exchange during the process of protein unfolding. The analysis indicates that the kinetic process of unfolding can be monitored by EX1 exchange (limited by the rate of opening) for ribonuclease A in these conditions. Of the 49 protons whose unfolding/exchange kinetics was measured, 47 have known hydrogen bond acceptor groups. To test whether exchange during unfolding follows the EX2 (base-catalyzed) or the EX1 (uncatalyzed) mechanism, unfolding/exchange was measured both at pH 8.0 and at pH 9.0. A few faster-exchanging protons were found that undergo exchange by both EX1 and EX2 processes, but the 43 slower-exchanging protons at pH 8 undergo exchange only by the EX1 mechanism, and they have closely similar rates. Thus, it is likely that all 49 protons undergo EX1 exchange at the same rate. The results indicate that a single rate-limiting step in unfolding breaks the entire network of peptide hydrogen bonds and causes the overall unfolding of ribonuclease A. The additional exchange observed for some protons that follows the EX2 mechanism probably results from equilibrium unfolding intermediates and will be discussed elsewhere.

摘要

在核糖核酸酶A(EC 3.1.27.5)的酶缓慢展开的条件下(10摄氏度,pH 8.0,4.5 M 氯化胍),进行了一项针对其动力学展开中间体的灵敏测试。利用肽NH质子的交换(2H-1H)来监测展开过程中各个氢键的结构开放情况,并建立了蛋白质展开过程中氢交换的动力学模型。分析表明,在这些条件下,核糖核酸酶A的展开动力学过程可以通过EX1交换(受开放速率限制)来监测。在测量其展开/交换动力学的49个质子中,47个具有已知的氢键受体基团。为了测试展开过程中的交换是遵循EX2(碱催化)还是EX1(非催化)机制,在pH 8.0和pH 9.0下都测量了展开/交换情况。发现有几个交换较快的质子通过EX1和EX2过程都能进行交换,但在pH 8时43个交换较慢的质子仅通过EX1机制进行交换,且它们的速率非常相似。因此,很可能所有49个质子都以相同的速率进行EX1交换。结果表明,展开过程中的单个限速步骤打破了肽氢键的整个网络,并导致了核糖核酸酶A的整体展开。一些遵循EX2机制的质子所观察到的额外交换可能源于平衡展开中间体,这将在其他地方进行讨论。

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Hydrogen exchange and the unfolding pathway of ribonuclease A.
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