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通过计算机分子对接研究,探讨链霉菌属 VITSTK7 化合物与选定抗真菌药物靶标酶的相互作用。

Interaction of Streptomyces sp. VITSTK7 compounds with selected antifungal drug target enzymes by in silico molecular docking studies.

机构信息

Division of Biomolecules and Genetics, School of Biosciences and Technology, VIT University, Vellore 632014, India.

出版信息

Interdiscip Sci. 2013 Jun;5(2):145-9. doi: 10.1007/s12539-013-0163-z. Epub 2013 Jun 6.

Abstract

Antifungal drugs are inhibitors either of fungal cell wall biosynthesis or essential reaction steps of fungal metabolic pathways. In silico studies have proved to be very effective on screening small molecules to be used as drugs and identifying essential reactions and pathways as targets. The aim of the present study was to predict the interactions of compounds present in the ethyl acetate extract of Streptomyces sp. VITSTK7 against selected fungal drug target enzymes. The ethyl acetate extract of the isolate showed significant anti-Aspergillus activity against the selected Aspergillus pathogens. Presence of the three compounds (C22H37NO7, C17H24N4O6 and C24H28N2O5) in the extract was identified by GC-MS spectra and matched with reference compounds available in the MS spectra library, NIST (National Institute for Standards and Technology). These compounds were analysed for the interaction with five selected fungal target proteins 1AFR, 1EA1, 1LKP, 1ZHX and 3PD73i3E. Docking was done using Patch dock beta 1.3 version and analysed by pymol 1.3 version. The tested compounds C22H37NO7, C17H24N4O6 and C24H28N2O5 showed least binding energy of -254.64 kcal/mol, -248.71 kcal/mol and -338.57 kcal/mol respectively with 1ZHX. The result of this study revealed that all the three compounds from the strain had higher interaction with 1ZHX protein than with the other proteins. It shows that this strain could be the promising source for the antifungal drug.

摘要

抗真菌药物是真菌细胞壁生物合成或真菌代谢途径关键反应步骤的抑制剂。计算机模拟研究已被证明在筛选小分子药物和鉴定关键反应和途径作为靶点方面非常有效。本研究旨在预测链霉菌属 VITSTK7 菌株乙酸乙酯提取物中化合物与选定真菌药物靶标酶的相互作用。该分离物的乙酸乙酯提取物对所选的曲霉菌病原体显示出显著的抗 Aspergillus 活性。通过 GC-MS 图谱鉴定出提取物中存在三种化合物(C22H37NO7、C17H24N4O6 和 C24H28N2O5),并与 MS 图谱库中可用的参考化合物 NIST(国家标准与技术研究所)相匹配。这些化合物与五个选定的真菌靶蛋白 1AFR、1EA1、1LKP、1ZHX 和 3PD73i3E 进行了相互作用分析。使用 Patch dock beta 1.3 版本进行对接,并通过 pymol 1.3 版本进行分析。测试的化合物 C22H37NO7、C17H24N4O6 和 C24H28N2O5 分别与 1ZHX 显示出最低的结合能 -254.64 kcal/mol、-248.71 kcal/mol 和 -338.57 kcal/mol。这项研究的结果表明,该菌株中的所有三种化合物与 1ZHX 蛋白的相互作用都高于与其他蛋白的相互作用。这表明该菌株可能是抗真菌药物的有前途的来源。

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