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Thermodynamic and structural insights into the repurposing of drugs that bind to SARS-CoV-2 main protease

机译:热力学和结构的见解再利用结合SARS-CoV-2主要的药物蛋白酶

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Although researchers have been working tirelessly since the COVID-19 outbreak,so far only three drugs-remdesivir,ronapreve and molnupiravir-have been approved for use in some countries which directly target the SARS-CoV-2 virus.Given the slow pace and substantial costs of new drug discovery and development,together with the urgency of the matter,repurposing of existing drugs for the ongoing disease is an attractive proposition.In a recent study,a high-throughput X-ray crystallographic screen was performed for a selection of drugs which have been approved or are in clinical trials.Thirty-seven compounds have been identified from drug libraries all of which bind to the SARS-CoV-2 main protease(3CL~(pro)).In the current study,we use molecular dynamics simulation and an ensemble-based free energy approach,namely,enhanced sampling of molecular dynamics with approximation of continuum solvent(ESMACS),to investigate a subset of the aforementioned compounds.The drugs studied here are highly diverse,interacting with different binding sites and/or subsites of 3CL~(pro).The predicted free energies are compared with experimental results wherever they are available and they are found to be in excellent agreement.Our study also provides detailed energetic insights into the nature of the associated drug-protein binding,in turn shedding light on the design and discovery of potential drugs.
机译:尽管研究人员一直不知疲倦地工作COVID-19爆发以来,到目前为止,只有三个drugs-remdesivir, ronapreve molnupiravir-have在一些国家被批准使用直接目标SARS-CoV-2病毒。缓慢和大量新药的成本发现和发展,一起这个问题的紧迫性,再利用现有的是一个有吸引力的药物正在进行的疾病命题。x射线晶体屏幕被执行选择的药物已被批准在临床试验中。已确定药物库的所有绑定到SARS-CoV-2主要吗蛋白酶(3 cl ~ (pro))。分子动力学模拟和一个ensemble-based自由能方法,即提高抽样的分子动态连续的近似溶剂(ESMACS),调查的一个子集提到的化合物。是高度多样化,与不同的互动结合位点和/或子站3 cl ~ (pro)。预计自由能与之相比实验结果无论他们是可用的他们发现在优秀协议。精力充沛的见解的性质药物相关的绑定,脱落设计和发现的潜力药物。

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