Design and screening of tetracycline antibiotics: an in-silico approach

Nahar Barbhuyan, Dubom Tayeng, Neelutpal Gogoi, Lima Patowary, D. Chetia, Malita Barthakur
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引用次数: 2

Abstract

A prominent class of broad-spectrum antibiotics known as tetracycline works by inhibiting the synthesis of proteins, which prevents the development of bacteria. Tetracycline resistance is typically attributed to one or more of the following causes: ribosomal binding site mutations, acquisition of mobile genetic elements carrying tetracycline-specific resistance genes, and/or chromosomal mutations that increase the expression of intrinsic resistance mechanisms. In this research, our objective is to virtually plan and conduct in-silico experiments to find tetracycline derivatives with inhibitory capability against tetracycline resistance protein. The tetracycline derivatives were screened using the Data Warrior, Discovery Studio, PyRx, and Swiss ADME web tools. Initially, 19 tetracycline derivatives were primarily screened for ADME and toxicity study followed by docking study. Among the tetracycline derivatives, C1, C11, C12, C14, C16, and C17 were found to be the potential drug-like molecules with binding energies of -8.9 kcal/mol, -8.4 kcal/mol, -8.5 kcal/mol, -7.7 kcal/mol, -7.7 kcal/mol, -8.6 kcal/mol respectively. In particular, C1 was predicted to have a better binding affinity towards the target protein than the others.
四环素类抗生素的设计和筛选:一种计算机方法
一类著名的广谱抗生素四环素通过抑制蛋白质的合成而起作用,从而阻止细菌的生长。四环素耐药通常归因于以下一种或多种原因:核糖体结合位点突变,获得携带四环素特异性耐药基因的可移动遗传元件,和/或增加内在耐药机制表达的染色体突变。在本研究中,我们的目标是虚拟规划并进行计算机实验,寻找对四环素抗性蛋白具有抑制能力的四环素衍生物。使用Data Warrior、Discovery Studio、PyRx和Swiss ADME网络工具筛选四环素衍生物。首先对19个四环素衍生物进行ADME筛选和毒性研究,然后进行对接研究。在四环素衍生物中,C1、C11、C12、C14、C16和C17分别为结合能为-8.9 kcal/mol、-8.4 kcal/mol、-8.5 kcal/mol、-7.7 kcal/mol、-7.7 kcal/mol、-8.6 kcal/mol的潜在类药物分子。特别是,预测C1比其他蛋白对靶蛋白具有更好的结合亲和力。
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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