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群体转移与诱导契合:牛精核糖核酸酶交换二聚体的案例

Population shift vs induced fit: the case of bovine seminal ribonuclease swapping dimer.

作者信息

Merlino Antonello, Vitagliano Luigi, Sica Filomena, Zagari Adriana, Mazzarella Lelio

机构信息

Dipartimento di Chimica, Università degli Studi di Napoli Federico II, Via Cynthia, 80126 Napoli, Italy.

出版信息

Biopolymers. 2004 Apr 15;73(6):689-95. doi: 10.1002/bip.20016.

Abstract

Bovine seminal ribonuclease (BS-RNase) is a unique member of the pancreatic-like ribonuclease superfamily. This enzyme exists as two conformational isomers with distinctive biological properties. The structure of the major isomer is characterized by the swapping of the N-terminal segment (MxM BS-RNase). In this article, the crystal structures of the ligand-free MxM BS-RNase and its complex with 2'-deoxycitidylyl(3',5')-2'-deoxyadenosine derived from isomorphous crystals have been refined. Interestingly, the comparison between this novel ligand-free form and the previously published sulfate-bound structure reveals significant differences. In particular, the ligand-free MxM BS-RNase is closer to the structure of MxM BS-RNase productive complexes than to the sulfate-bound form. These results reveal that MxM BS-RNase presents a remarkable flexibility, despite the structural constraints of the interchain disulfide bridges and the swapping of the N-terminal helices. These findings have important implications to the ligand binding mechanism of MxM BS-RNase. Indeed, a population shift rather than a substrate-induced conformational transition may occur in the MxM BS-RNase ligand binding process.

摘要

牛精核糖核酸酶(BS-RNase)是胰脏样核糖核酸酶超家族中的独特成员。这种酶以两种具有不同生物学特性的构象异构体形式存在。主要异构体的结构特征是N端片段的交换(MxM BS-RNase)。在本文中,已对来自同晶型晶体的无配体MxM BS-RNase及其与2'-脱氧胞苷基(3',5')-2'-脱氧腺苷的复合物的晶体结构进行了优化。有趣的是,这种新型无配体形式与先前发表的硫酸盐结合结构之间的比较揭示了显著差异。特别是,无配体的MxM BS-RNase与MxM BS-RNase活性复合物的结构比与硫酸盐结合形式的结构更接近。这些结果表明,尽管存在链间二硫键的结构限制和N端螺旋的交换,MxM BS-RNase仍具有显著的灵活性。这些发现对MxM BS-RNase的配体结合机制具有重要意义。实际上,在MxM BS-RNase配体结合过程中可能发生群体转移而非底物诱导的构象转变。

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