Computational Screening of Phytochemicals against Munc13-1, a Promising target to treat Alcoholism

M. Tariq
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引用次数: 2

Abstract

In silico analysis and characterization has revolutionized target and drug discovery significantly. Alcohol abuse is a big threat to society, economy and wellbeing of people. It has increased the overall disease and injury burden, globally. Recently, a study revealed a brain protein, Munc13-1 C1 domain to play a significant role in development of alcohol tolerance, by binding to alcohol molecules, eventually leading to Alcohol Use Disorder. The aim of this study was to discover a phytochemical that would attach to our target protein, Munc13-1 C1 domain so that it cannot bind with the alcohol molecules. Munc13-1 3D structure obtained from PDB was docked against a library of compounds by MOE software. Ten phytochemicals based on their binding affinity with the target protein were shortlisted i.e. Tannic Acid, Anemone blue anthocyanin 1, Oolonghomobisflavan B, Diosmin, Oolonghomobisflavan A, Neodiosmin, Blepharocalyxin B, 8-Hydroxyhesperetin, Eupatorin and Monotesone A. However, only 8-Hydroxyhesperetin, Eupatorin and Monotesone A followed Lipinski rules. They were non-toxic and non-carcinogenic according to SwissADME. Moreover, have a good drug-like model score as analysed by Molsoft. Further, in-vivo and invitro examinations are required to inspect their role in reducing alcohol tolerance.
抗Munc13-1植物化学物质的计算筛选——一个治疗酒精中毒的有希望的靶点
在硅分析和表征革命性的目标和药物发现显著。酗酒是对社会、经济和人民福祉的一大威胁。它增加了全球的总体疾病和伤害负担。最近,一项研究揭示了一种名为Munc13-1 C1结构域的大脑蛋白,通过与酒精分子结合,最终导致酒精使用障碍,在酒精耐受性的发展中发挥重要作用。这项研究的目的是发现一种植物化学物质,可以附着在我们的目标蛋白Munc13-1 C1结构域上,使其不能与酒精分子结合。通过MOE软件将从PDB中获得的Munc13-1三维结构与化合物库对接。根据与目标蛋白的结合亲和性,筛选出了鞣酸、海葵蓝花青素1、乌龙同质黄烷B、薯蓣皂苷、乌龙同质黄烷A、新薯蓣皂苷、Blepharocalyxin B、8-羟基橙皮苷、Eupatorin和montesone A等10种植物化学物质,但只有8-羟基橙皮苷、Eupatorin和montesone A符合Lipinski规则。根据SwissADME,它们是无毒和无致癌的。此外,根据Molsoft分析,具有良好的药物样模型评分。此外,还需要进行体内和体外试验来检验它们在降低酒精耐受性方面的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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