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使用基于配体和基于结构的方法进行虚拟高通量筛选的当前趋势。

Current trends in virtual high throughput screening using ligand-based and structure-based methods.

作者信息

Sukumar Nagamani, Das Sourav

机构信息

Department of Chemistry, Rensselaer Polytechnic Institute, 110 Eighth Street, Troy, NY 12180, USA.

出版信息

Comb Chem High Throughput Screen. 2011 Dec;14(10):872-88. doi: 10.2174/138620711797537120.

Abstract

High throughput in silico methods have offered the tantalizing potential to drastically accelerate the drug discovery process. Yet despite significant efforts expended by academia, national labs and industry over the years, many of these methods have not lived up to their initial promise of reducing the time and costs associated with the drug discovery enterprise, a process that can typically take over a decade and cost hundreds of millions of dollars from conception to final approval and marketing of a drug. Nevertheless structure-based modeling has become a mainstay of computational biology and medicinal chemistry, helping to leverage our knowledge of the biological target and the chemistry of protein-ligand interactions. While ligand-based methods utilize the chemistry of molecules that are known to bind to the biological target, structure-based drug design methods rely on knowledge of the three-dimensional structure of the target, as obtained through crystallographic, spectroscopic or bioinformatics techniques. Here we review recent developments in the methodology and applications of structure-based and ligand-based methods and target-based chemogenomics in Virtual High Throughput Screening (VHTS), highlighting some case studies of recent applications, as well as current research in further development of these methods. The limitations of these approaches will also be discussed, to give the reader an indication of what might be expected in years to come.

摘要

高通量计算机模拟方法为大幅加速药物研发进程提供了诱人的潜力。然而,尽管多年来学术界、国家实验室和企业付出了巨大努力,但其中许多方法并未实现其最初承诺的减少与药物研发企业相关的时间和成本,从药物构思到最终获批和上市,这一过程通常需要十多年时间,花费数亿美元。尽管如此,基于结构的建模已成为计算生物学和药物化学的支柱,有助于利用我们对生物靶点以及蛋白质 - 配体相互作用化学的了解。基于配体的方法利用已知与生物靶点结合的分子的化学性质,而基于结构的药物设计方法则依赖于通过晶体学、光谱学或生物信息学技术获得的靶点三维结构知识。在此,我们综述基于结构和基于配体的方法以及基于靶点的化学基因组学在虚拟高通量筛选(VHTS)中的方法学和应用的最新进展,重点介绍一些近期应用的案例研究以及这些方法进一步发展的当前研究。还将讨论这些方法的局限性,以便让读者了解未来几年可能的预期情况。

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