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In Silico Development of Quorum-Sensing Inhibitors

机译:在仲裁抑制剂的硅发育中

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摘要

Quorum sensing (QS) is a chemical communication between bacteria, with which bacteria sense the population of their own species. Autoinducer-2 (AI-2) is a class of universal quorum-sensing molecules, which is used by both Gram-negative and Gram-positive bacteria. The inhibition of AI-2-mediated QS has various practical applications, including the prevention of the formation of biofilm in dental gums. In this work, we develop a computational protocol for developing AI-2 inhibitors. A challenging aspect of such an endeavor is that the receptor undergoes a large conformational change upon ligand binding. We combine several methods such as molecular docking with multiple conformations, molecular dynamics simulations, and molecular mechanics Poisson-Boltzmann computation, in order to estimate binding affinity of candidate molecules to a quorum-sensing receptor. We apply our method to rank the substances in a chemical library. We indeed find a molecule that has a higher affinity than previously known ligands, thus showing the feasibility of the protocol for the development of quorum-sensing inhibitors.
机译:法定传感(QS)是细菌之间的化学沟通,细菌感觉到自己物种的人群。 AutoInducer-2(AI-2)是一类通用仲裁分子,其被革兰氏阴性和革兰氏阳性细菌使用。抑制AI-2介导的QS具有各种实际应用,包括预防生物膜在牙龈牙龈中的形成。在这项工作中,我们开发了一种用于开发AI-2抑制剂的计算协议。这种努力的挑战方面是受体在配体结合时经历大的构象变化。我们结合了多种方法,例如具有多个构象,分子动力学模拟和分子力学泊松 - 博尔兹曼计算的分子对接,以估计候选分子对批量传感受体的结合亲和力。我们应用我们的方法来对化学文库中的物质进行排名。我们确实发现具有比先前已知的配体更高亲和力的分子,因此显示了批量传感抑制剂的发展方案的可行性。

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