FKBP公司
化学
效应器
钙调神经磷酸酶
化学生物学
药物发现
噬菌体展示
HEK 293细胞
计算生物学
生物化学
细胞生物学
受体
肽
生物
外科
医学
移植
作者
Zufeng Guo,Sam Y. Hong,Jingxin Wang,Shahid Rehan,Wukun Liu,Hanjing Peng,Manisha Das,Wei Li,Shridhar Bhat,Brandon Peiffer,Brett R. Ullman,Chung‐Ming Tse,Zlatina Tarmakova,Cordelia Schiene‐Fischer,Gunter Fischer,Imogen R. Coe,Ville O. Paavilainen,Zhaoli Sun,Jun O. Liu
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2018-11-29
卷期号:11 (3): 254-263
被引量:83
标识
DOI:10.1038/s41557-018-0187-4
摘要
Rapamycin and FK506 are macrocyclic natural products with an extraordinary mode of action, in which they form binary complexes with FK506-binding protein (FKBP) through a shared FKBP-binding domain before forming ternary complexes with their respective targets, mechanistic target of rapamycin (mTOR) and calcineurin, respectively. Inspired by this, we sought to build a rapamycin-like macromolecule library to target new cellular proteins by replacing the effector domain of rapamycin with a combinatorial library of oligopeptides. We developed a robust macrocyclization method using ring-closing metathesis and synthesized a 45,000-compound library of hybrid macrocycles (named rapafucins) using optimized FKBP-binding domains. Screening of the rapafucin library in human cells led to the discovery of rapadocin, an inhibitor of nucleoside uptake. Rapadocin is a potent, isoform-specific and FKBP-dependent inhibitor of the equilibrative nucleoside transporter 1 and is efficacious in an animal model of kidney ischaemia reperfusion injury. Together, these results demonstrate that rapafucins are a new class of chemical probes and drug leads that can expand the repertoire of protein targets well beyond mTOR and calcineurin. Rapamycin and FK506 are macrocycles that contain an FKBP-binding domain and an effector domain responsible for interacting with their respective targets, mTOR and calcineurin. Now, a 45,000-compound macrocycle library has been synthesized by fusing oligopeptides with synthetic FKBP-binding domains. Screening and subsequent optimization yielded a highly potent FKBP-dependent inhibitor of hENT1.
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