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分子动力学模拟揭示了人IIA族磷脂酶A中抑制剂结合模式和功能的结构见解。

Molecular dynamics simulations reveal structural insights into inhibitor binding modes and functionality in human Group IIA phospholipase A.

作者信息

Kim Ryung Rae, Malde Alpeshkumar K, Nematollahi Alireza, Scott Kieran F, Church W Bret

机构信息

Group in Biomolecular Structure and Informatics, Faculty of Pharmacy, The University of Sydney, Sydney, NSW, 2006, Australia.

School of Chemistry and Molecular Biosciences, University of Queensland, Brisbane, QLD, Australia, 4072.

出版信息

Proteins. 2017 May;85(5):827-842. doi: 10.1002/prot.25235. Epub 2017 Mar 16.

DOI:10.1002/prot.25235
PMID:28056488
Abstract

Human Group IIA phospholipase A (hGIIA) promotes inflammation in immune-mediated pathologies by regulating the arachidonic acid pathway through both catalysis-dependent and -independent mechanisms. The hGIIA crystal structure, both alone and inhibitor-bound, together with structures of closely related snake-venom-derived secreted phospholipase enzymes has been well described. However, differentiation of biological and nonbiological contacts and the relevance of structures determined from snake venom enzymes to human enzymes are not clear. We employed molecular dynamics (MD) and docking approaches to understand the binding of inhibitors that selectively or nonselectively block the catalysis-independent mechanism of hGIIA. Our results indicate that hGIIA behaves as a monomer in the solution environment rather than a dimer arrangement that is in the asymmetric unit of some crystal structures. The binding mode of a nonselective inhibitor, KH064, was validated by a combination of the experimental electron density and MD simulations. The binding mode of the selective pentapeptide inhibitor FLSYK to hGIIA was stipulated to be different to that of the snake venom phospholipases A of Daboia russelli pulchella (svPLA ). Our data suggest that the application of MD approaches to crystal structure data is beneficial in evaluating the robustness of conclusions drawn based on crystal structure data alone. Proteins 2017; 85:827-842. © 2016 Wiley Periodicals, Inc.

摘要

人类IIA组磷脂酶A(hGIIA)通过催化依赖性和非依赖性机制调节花生四烯酸途径,从而促进免疫介导疾病中的炎症反应。hGIIA的晶体结构,无论是单独的还是与抑制剂结合的,以及密切相关的蛇毒来源的分泌型磷脂酶的结构都已有详细描述。然而,生物和非生物接触的区分以及从蛇毒酶确定的结构与人类酶的相关性尚不清楚。我们采用分子动力学(MD)和对接方法来了解选择性或非选择性阻断hGIIA催化非依赖性机制的抑制剂的结合情况。我们的结果表明,hGIIA在溶液环境中表现为单体,而不是某些晶体结构不对称单元中的二聚体排列。通过实验电子密度和MD模拟相结合,验证了非选择性抑制剂KH064的结合模式。选择性五肽抑制剂FLSYK与hGIIA的结合模式被认为与锯鳞蝰蛇毒磷脂酶A(svPLA)不同。我们的数据表明,将MD方法应用于晶体结构数据有助于评估仅基于晶体结构数据得出的结论的稳健性。《蛋白质》2017年;85:827 - 842。© 2016威利期刊公司

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