寡核苷酸
适体
计算生物学
小分子
化学图书馆
噬菌体展示
药物发现
定向分子进化
DNA
基因组文库
核糖核酸
化学
生物
组合化学
生物化学
定向进化
分子生物学
基因
基序列
突变体
肽
作者
Matthew Clark,Raksha Acharya,Christopher C. Arico-Muendel,Svetlana Belyanskaya,Dennis R. Benjamin,Neil R Carlson,Paolo A. Centrella,Cynthia H. Chiu,Steffen P. Creaser,John W. Cuozzo,Christopher P. Davie,Yun Ding,G. Joseph Franklin,Kurt D Franzen,Malcolm L. Gefter,Steven P Hale,Nils Jakob Vest Hansen,David I. Israel,Jinwei Jiang,Malcolm J. Kavarana
摘要
Biochemical combinatorial techniques such as phage display, RNA display and oligonucleotide aptamers have proven to be reliable methods for generation of ligands to protein targets. Adapting these techniques to small synthetic molecules has been a long-sought goal. We report the synthesis and interrogation of an 800-million-member DNA-encoded library in which small molecules are covalently attached to an encoding oligonucleotide. The library was assembled by a combination of chemical and enzymatic synthesis, and interrogated by affinity selection. We describe methods for the selection and deconvolution of the chemical display library, and the discovery of inhibitors for two enzymes: Aurora A kinase and p38 MAP kinase.
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