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计算机辅助筛选毒蛇磷脂酶 A2 抑制剂:通过体外和体内研究验证。

In silico identification of viper phospholipaseA2 inhibitors: validation by in vitro, in vivo studies.

机构信息

Indian Institute of Integrative Medicine, Canal Road, Jammu 180001, India.

出版信息

J Mol Model. 2011 Dec;17(12):3063-73. doi: 10.1007/s00894-011-0994-7. Epub 2011 Mar 1.

DOI:10.1007/s00894-011-0994-7
PMID:21360175
Abstract

Snake venom, particularly of vipers from the Indian subcontinent, contains Phospholipase A2 (PLA2) as one its constituents which is widely implicated in hemorrhagic, cardiac arrest and death. Development of inhibitors of the protein can facilitate the weakening or annihilation of the venom toxicity and save many human lives. In the present communication, our studies relate to the design and development of structure-based ligands as inhibitors of PLA2 of Viper venom. The study involves the computational approach towards evaluating a library of molecules comprising of natural products, and synthetic molecules through docking studies on the venom protein PDB ID: 1OXL (a dimer, available in the literature). In silico experiments have resulted in the identification of several of them as PLA2 inhibitors. The inhibitory effect of PLA2 by these compounds is attributed to a great extent to their interaction with the residues Phe 46 and Val47 of chain B of the target protein and hence these two residues are identified as the key contributor for the said activity. In order to validate the in silico findings, a selected panel of compounds have been tested by in vitro and in vivo experiments against the venom, which has led to the observance of significant corroboration between the wet lab and in silico findings, validating thereby the in silico approach used in the present study.

摘要

蛇毒,特别是来自印度次大陆的蝰蛇的蛇毒,含有磷脂酶 A2(PLA2)作为其成分之一,广泛涉及出血、心脏骤停和死亡。该蛋白质抑制剂的开发可以促进减弱或消除毒液毒性,并挽救许多人的生命。在本研究中,我们的研究涉及基于结构的配体的设计和开发,作为蛇毒磷脂酶 A2 的抑制剂。该研究涉及通过对接研究评估包含天然产物和合成分子的文库的计算方法,对 venom 蛋白 PDB ID:1OXL(文献中提供的二聚体)进行评估。计算机实验已经鉴定出其中的几种是 PLA2 抑制剂。这些化合物对 PLA2 的抑制作用在很大程度上归因于它们与靶蛋白链 B 的残基 Phe 46 和 Val47 的相互作用,因此这两个残基被确定为该活性的关键贡献者。为了验证计算机实验结果,对选定的化合物进行了体外和体内实验,以对抗毒液,这导致在湿实验室和计算机实验结果之间观察到了显著的一致性,从而验证了本研究中使用的计算机方法。

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