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肌球蛋白亚片段-1过渡态中SH1-SH2螺旋的构象动力学

Conformational dynamics of the SH1-SH2 helix in the transition states of myosin subfragment-1.

作者信息

Nitao Lisa K, Yeates Todd O, Reisler Emil

机构信息

Department of Chemistry and Biochemistry, Molecular Biology Institute, University of California, Los Angeles, CA 90095, USA.

出版信息

Biophys J. 2002 Nov;83(5):2733-41. doi: 10.1016/S0006-3495(02)75283-1.

Abstract

The alpha-helix containing the thiols, SH1 (Cys-707) and SH2 (Cys-697), has been proposed to be one of the structural elements responsible for the transduction of conformational changes in the myosin head (subfragment-1 (S1)). Previous studies, using a method that isolated and measured the rate of the SH1-SH2 cross-linking step, showed that this helix undergoes ligand-induced conformational changes. However, because of long incubation times required for the formation of the transition state complexes (S1.ADP.BeF(x), S1.ADP.AlF(4)-, and S1.ADP.V(i)), this method could not be used to determine the cross-linking rate constants for such states. In this study, kinetic data from the SH1-SH2 cross-linking reaction were analyzed by computational methods to extract rate constants for the two-step mechanism. For S1.ADP.BeF(x), the results obtained were similar to those for S1.ATPgammaS. For reactions involving S1.ADP.AlF(4)- and S1.ADP.V(i), the first step (SH1 modification) is rate limiting; consequently, only lower limits could be established for the rate constants of the cross-linking step. Nevertheless, these results show that the cross-linking rate constants in the transition state complexes are increased at least 20-fold for all the reagents, including the shortest one, compared with nucleotide-free S1. Thus, the SH1-SH2 helix appears to be destabilized in the post-hydrolysis state.

摘要

含有巯基SH1(半胱氨酸-707)和SH2(半胱氨酸-697)的α螺旋,被认为是负责转导肌球蛋白头部(亚片段-1(S1))构象变化的结构元件之一。先前的研究使用一种分离并测量SH1-SH2交联步骤速率的方法,表明该螺旋会经历配体诱导的构象变化。然而,由于形成过渡态复合物(S1.ADP.BeF(x)、S1.ADP.AlF(4)-和S1.ADP.V(i))需要较长的孵育时间,该方法无法用于确定此类状态下的交联速率常数。在本研究中,通过计算方法分析了SH1-SH2交联反应的动力学数据,以提取两步机制的速率常数。对于S1.ADP.BeF(x),获得的结果与S1.ATPγS的结果相似。对于涉及S1.ADP.AlF(4)-和S1.ADP.V(i)的反应,第一步(SH1修饰)是限速步骤;因此,只能确定交联步骤速率常数的下限。尽管如此,这些结果表明,与无核苷酸的S1相比,所有试剂(包括最短的试剂)在过渡态复合物中的交联速率常数至少增加了20倍。因此,SH1-SH2螺旋在水解后状态似乎不稳定。

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Probing the conformational states of the SH1-SH2 helix in myosin: a cross-linking approach.
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