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克拉毒素复合物及其磷脂酶 A2 亚基的结构与酶活性的关系:一种计算机模拟方法。

Relationship between the structure and the enzymatic activity of crotoxin complex and its phospholipase A2 subunit: an in silico approach.

机构信息

Programa de Ofidismo/Escorpionismo, Universidad de Antioquia, A.A. 1226, Medellín, Colombia.

出版信息

J Mol Graph Model. 2012 May;35:36-42. doi: 10.1016/j.jmgm.2012.01.004. Epub 2012 Jan 30.

DOI:10.1016/j.jmgm.2012.01.004
PMID:22481077
Abstract

Crotoxin, one of the major toxins of South American rattlesnake Crotalus durissus subspecies, is an heterodimeric complex composed of two distinct subunits: a basic phospholipase A(2) (PLA(2), CB) and an acidic nontoxic catalytically inactive protein, crotapotin (CA). It's well known that CB has a high enzymatic activity; however the molecular aspects that determine this fact remain unknown. In this study, an in silico approach was used to predict the CA structure by homology modeling, and the crotoxin structure by means of molecular docking. CA structure was built using the software Modeller taking Crotalus atrox PLA(2) (1PP2:R) as a template. Different criteria measured by Procheck, Verify 3D and ProSA were indicative of the reliability and the proper fold for the predicted structural model of CA. Then, a combination of this model and CB crystal structure was used to build the structure of crotoxin complex through rigid-body protein-protein docking. The crotoxin-3D model suggested that by means of hydrophobic and π-π stacking interactions, CA-Y24 and CA-F119 interact with CB-F24 and CB-F119, respectively. Those interactions could prevent the interfacial adsorption of the CB onto the lipid/water interface by blocking part of the interfacial binding surface of the PLA(2). This fact could explain the differences regarding to enzymatic activity between the crotoxin complex and CB. In addition, the crotoxin-3D model showed solvent-exposed regions of CA that could bind the receptor expressed in target cells.

摘要

响尾蛇毒素是一种由两个不同亚基组成的异二聚体复合物,其中一个亚基是碱性磷脂酶 A2(PLA2,CB),另一个是酸性无毒且无催化活性的蛋白,即 crotapotin(CA)。已知 CB 具有很高的酶活性,但决定这一事实的分子方面仍不清楚。在这项研究中,我们采用了一种计算方法,通过同源建模来预测 CA 的结构,并通过分子对接来预测 crotoxin 的结构。CA 结构的构建采用了 Modeller 软件,以 Crotalus atrox PLA2(1PP2:R)作为模板。Procheck、Verify 3D 和 ProSA 等不同标准表明,CA 预测结构模型的可靠性和正确折叠。然后,将这个模型与 CB 晶体结构相结合,通过刚性蛋白质-蛋白质对接构建 crotoxin 复合物的结构。crotoxin-3D 模型表明,CA-Y24 和 CA-F119 分别通过疏水相互作用和π-π堆积相互作用与 CB-F24 和 CB-F119 相互作用。这些相互作用可以通过阻止 PLA2 的部分界面结合表面与脂质/水界面的界面吸附,来防止 CB 在界面上的吸附。这一事实可以解释 crotoxin 复合物与 CB 在酶活性方面的差异。此外,crotoxin-3D 模型还显示了 CA 中溶剂暴露的区域,这些区域可能与靶细胞中表达的受体结合。

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