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虫子、药物与化学基因组学。

Bugs, drugs and chemical genomics.

机构信息

Department of Infectious Disease, Merck, Kenilworth, New Jersey, USA.

出版信息

Nat Chem Biol. 2011 Dec 15;8(1):46-56. doi: 10.1038/nchembio.744.

Abstract

The serendipitous discovery of penicillin inspired intensive research into how small molecules affect basic cellular processes and their potential to treat disease. Biochemical and genetic approaches have been fundamental for clarifying small-molecule modes of action. Genomic technologies have permitted the use of chemical-genetic strategies that comprehensively study compound-target relationships in the context of a living cell, providing a systems biology view of both the cellular targets and the interdependent networks that respond to chemical stress. These studies highlight the fact that in vitro determinations of mechanism rarely translate into a complete understanding of drug behavior in the cell. Here, we review key discoveries that gave rise to the field of chemical genetics, with particular attention to chemical-genetic strategies developed for bakers' yeast, their extension to clinically relevant microbial pathogens, and the potential of these approaches to affect antimicrobial drug discovery.

摘要

青霉素的偶然发现激发了人们对小分子如何影响基本细胞过程及其治疗疾病潜力的深入研究。生化和遗传方法对于阐明小分子的作用模式至关重要。基因组技术使得能够使用化学遗传学策略,在活细胞的背景下全面研究化合物-靶标关系,为细胞靶标和应对化学应激的相互依存网络提供系统生物学的视角。这些研究强调了一个事实,即在体外确定机制很少能转化为对细胞内药物行为的完整理解。在这里,我们回顾了促成化学遗传学领域的关键发现,特别关注为面包酵母开发的化学遗传学策略,以及它们在临床相关微生物病原体中的扩展,以及这些方法对抗菌药物发现的潜在影响。

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