化学
半胱氨酸
共价键
基诺美
药物发现
电泳剂
小分子
激酶
生物正交化学
组合化学
丙烯酰胺
生物化学
酶
有机化学
点击化学
聚合物
催化作用
共聚物
作者
Kirsten McAulay,Emily Hoyt,Morgan Thomas,Marianne Schimpl,Michael S. Bodnarchuk,Hilary Lewis,Derek Barratt,Deepa Bhavsar,David M. Robinson,Michael J. Deery,D. Ogg,Gonçalo J. L. Bernardes,Richard A. Ward,Michael J. Waring,Jason G. Kettle
摘要
With a resurgence in interest in covalent drugs, there is a need to identify new moieties capable of cysteine bond formation that are differentiated from commonly employed systems such as acrylamide. Herein, we report on the discovery of new alkynyl benzoxazine and dihydroquinazoline moieties capable of covalent reaction with cysteine. Their utility as alternative electrophilic warheads for chemical biological probes and drug molecules is demonstrated through site-selective protein modification and incorporation into kinase drug scaffolds. A potent covalent inhibitor of JAK3 kinase was identified with superior selectivity across the kinome and improvements in in vitro pharmacokinetic profile relative to the related acrylamide-based inhibitor. In addition, the use of a novel heterocycle as a cysteine reactive warhead is employed to target Cys788 in c-KIT, where acrylamide has previously failed to form covalent interactions. These new reactive and selective heterocyclic warheads supplement the current repertoire for cysteine covalent modification while avoiding some of the limitations generally associated with established moieties.
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