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核糖核酸酶A的N端交换二聚体的动力学特性

Dynamic properties of the N-terminal swapped dimer of ribonuclease A.

作者信息

Merlino Antonello, Vitagliano Luigi, Ceruso Marc Antoine, Mazzarella Lelio

机构信息

Dipartimento di Scienze Farmaceutiche, Università di Salerno, Fisciano, Italy.

出版信息

Biophys J. 2004 Apr;86(4):2383-91. doi: 10.1016/S0006-3495(04)74295-2.

Abstract

Bovine pancreatic ribonuclease (RNase A) forms two 3-dimensional domain-swapped dimers with different quaternary structures. One dimer is characterized by the swapping of the C-terminal region (C-Dimer) and presents a rather loose structure. The other dimer (N-Dimer) exhibits a very compact structure with exchange of the N-terminal helix. Here we report the results of a molecular dynamics/essential dynamics (MD/ED) study carried out on the N-Dimer. This investigation, which represents the first MD/ED analysis on a three-dimensional domain-swapped enzyme, provides information on the dynamic properties of the active site residues as well as on the global motions of the dimer subunits. In particular, the analysis of the flexibility of the active site residues agrees well with recent crystallographic and site-directed mutagenesis studies on monomeric RNase A, thus indicating that domain swapping does not affect the dynamics of the active sites. A slight but significant rearrangement of N-Dimer quaternary structure, favored by the formation of additional hydrogen bonds at subunit interface, has been observed during the MD simulation. The analysis of collective movements reveals that each subunit of the dimer retains the functional breathing motion observed for RNase A. Interestingly, the breathing motion of the two subunits is dynamically coupled, as they open and close in phase. These correlated motions indicate the presence of active site intercommunications in this dimer. On these bases, we propose a speculative mechanism that may explain negative cooperativity in systems preserving structural symmetry during the allosteric transitions.

摘要

牛胰核糖核酸酶(RNase A)形成两种具有不同四级结构的三维结构域交换二聚体。一种二聚体的特征是C末端区域的交换(C-二聚体),呈现出相当松散的结构。另一种二聚体(N-二聚体)表现出非常紧凑的结构,N末端螺旋发生交换。在此,我们报告了对N-二聚体进行的分子动力学/主成分动力学(MD/ED)研究结果。这项研究是对三维结构域交换酶的首次MD/ED分析,提供了关于活性位点残基的动态特性以及二聚体亚基整体运动的信息。特别是,对活性位点残基灵活性的分析与最近对单体RNase A的晶体学和定点诱变研究结果非常吻合,这表明结构域交换不会影响活性位点的动力学。在MD模拟过程中,观察到N-二聚体四级结构发生了轻微但显著的重排,这是由于在亚基界面形成了额外的氢键。对集体运动的分析表明,二聚体的每个亚基都保留了在RNase A中观察到的功能性呼吸运动。有趣的是,两个亚基的呼吸运动是动态耦合的,因为它们同步打开和关闭。这些相关运动表明该二聚体中存在活性位点的相互通信。基于这些,我们提出了一种推测性机制,该机制可能解释在变构转变过程中保持结构对称的系统中的负协同性。

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