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晶体结构的响尾蛇神经毒素揭示了关键残基在稳定性和毒性的这种有效的异二聚体β-神经毒素。

Crystal structure of crotoxin reveals key residues involved in the stability and toxicity of this potent heterodimeric β-neurotoxin.

机构信息

Institut Pasteur, Unité d'Immunologie Structurale, CNRS, URA 2185, Département de Biologie Structurale et Chimie, 25 Rue du Dr. Roux, F-75015 Paris, France.

出版信息

J Mol Biol. 2011 Sep 16;412(2):176-91. doi: 10.1016/j.jmb.2011.07.027. Epub 2011 Jul 23.

Abstract

The crystal structure of crotoxin, a potent presynaptic neurotoxin from Crotalus durissusterrificus, was solved at 1.35 Å resolution. It shows the architecture of the three disulfide-linked polypeptide chains (α, β, and γ) of the acidic subunit CA noncovalently complexed with the basic phospholipase A(2) (PLA(2)) subunit CB. The unique structural scaffold of the association of the CA and CB subunits indicates that posttranslational cleavage of the pro-CA precursor is a prerequisite for the assembly of the CA-CB complex. These studies provide novel structural insights to explain the role of the CA subunit in the mechanism of action of crotoxin. The crystal structure of the highly toxic and stable CA(2)CBb complex crystallized here allows us to identify key amino acid residues responsible for significant differences in the pharmacological activities of the two classes of crotoxin complexes. In particular, we show that critical residues Trp31 and Trp70 of the CBb subunit establish intermolecular polar contacts with Asp99 and Asp89, respectively, of the β-chain of CA(2) and contribute to the stability and toxicity of the CA(2)CBb complex. These interactions also lead to decreased PLA(2) activity by partially blocking substrate access to the catalytic dyad and by masking several interfacial binding surface residues important for PLA(2) interaction with phospholipids. Identification of the binding interface between the CA subunits and the CB subunits of crotoxin is important for the structure-based design of antineurotoxic inhibitors. Since crotoxin displays numerous physiological functions, including antitumoral properties, knowledge of its three-dimensional structure will be useful for the understanding of these diverse effects.

摘要

响尾蛇毒素的晶体结构,一种来自 Crotalus durissusterrificus 的有效突触前神经毒素,在 1.35 Å 分辨率下得到解决。它显示了酸性亚基 CA 的三个二硫键连接的多肽链(α、β和γ)与碱性磷脂酶 A(2)(PLA(2))亚基 CB 的非共价复合物的结构。CA 和 CB 亚基结合的独特结构支架表明,前体 CA 的翻译后切割是组装 CA-CB 复合物的前提。这些研究为解释 CA 亚基在响尾蛇毒素作用机制中的作用提供了新的结构见解。这里结晶的高度有毒和稳定的 CA(2)CBb 复合物的晶体结构使我们能够识别负责两种响尾蛇毒素复合物药理学活性显著差异的关键氨基酸残基。特别是,我们表明 CBb 亚基的关键残基 Trp31 和 Trp70 分别与 CA(2)β链的 Asp99 和 Asp89 建立分子间极性接触,并有助于 CA(2)CBb 复合物的稳定性和毒性。这些相互作用还通过部分阻止底物进入催化二联体和掩盖与 PLA(2)与磷脂相互作用重要的几个界面结合表面残基来降低 PLA(2)活性。鉴定 CA 亚基与响尾蛇毒素的 CB 亚基之间的结合界面对于基于结构的抗神经毒性抑制剂的设计很重要。由于响尾蛇毒素具有多种生理功能,包括抗肿瘤特性,因此了解其三维结构将有助于理解这些不同的作用。

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