灵活性(工程)
药物发现
环肽
计算生物学
计算机科学
构造(python库)
对偶(语法数字)
组合化学
寡核苷酸
化学
肽
小分子
DNA
生物化学
生物
文学类
统计
艺术
程序设计语言
数学
作者
Dimitar Petrov,Louise Plais,Kristina Schira,Junyu Cai,Michelle Keller,Alice Lessing,Gabriele Bassi,Samuele Cazzamalli,Dario Neri,Andreas Gloger,Jörg Scheuermann
标识
DOI:10.1038/s41467-025-58507-w
摘要
Abstract Cyclic peptides constitute an important drug modality since they offer significant advantages over small molecules and macromolecules. However, access to diverse chemical sets of cyclic peptides is difficult on a large library scale. DNA-encoded Chemical Libraries (DELs) provide a suitable tool to obtain large chemical diversity, but cyclic DELs made by standard DEL implementation cannot efficiently explore their conformational diversity. On the other hand, dual-display Encoded Self-Assembling Chemical (ESAC) Libraries can be used for modulating macrocycle flexibility since the two displayed peptides can be connected in an incremental fashion. In this work, we construct a 56 million dual-display ESAC library using a two-step cyclization strategy. We show that varying the level of conformational restraint is essential for the discovery of specific ligands for the three protein targets thrombin, human alkaline phosphatase and streptavidin.
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