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DNA-Encoded Chemical Libraries: A Selection System Based on Endowing Organic Compounds with Amplifiable Information
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2018-06-20 00:00:00 , DOI: 10.1146/annurev-biochem-062917-012550
Dario Neri 1 , Richard A Lerner 2
Affiliation  

The discovery of organic ligands that bind specifically to proteins is a central problem in chemistry, biology, and the biomedical sciences. The encoding of individual organic molecules with distinctive DNA tags, serving as amplifiable identification bar codes, allows the construction and screening of combinatorial libraries of unprecedented size, thus facilitating the discovery of ligands to many different protein targets. Fundamentally, one links powers of genetics and chemical synthesis. After the initial description of DNA-encoded chemical libraries in 1992, several experimental embodiments of the technology have been reduced to practice. This review provides a historical account of important milestones in the development of DNA-encoded chemical libraries, a survey of relevant ongoing research activities, and a glimpse into the future.

中文翻译:


DNA 编码的化学文库:基于赋予有机化合物可放大信息的选择系统

发现与蛋白质特异性结合的有机配体是化学、生物学和生物医学领域的一个中心问题。具有独特 DNA 标签的单个有机分子的编码,作为可放大的识别条形码,允许构建和筛选前所未有大小的组合文库,从而促进许多不同蛋白质靶标的配体的发现。从根本上讲,遗传学和化学合成的力量联系在一起。1992 年首次描述 DNA 编码化学文库后,该技术的几个实验实施例已付诸实践。这篇综述提供了 DNA 编码化学库发展过程中重要里程碑的历史记录、对相关正在进行的研究活动的调查以及对未来的展望。

更新日期:2018-06-20
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