毒液
肽
自分泌信号
离子通道
选择(遗传算法)
体内
化学
通道阻滞剂
药理学
生物
计算生物学
生物化学
受体
计算机科学
生物技术
人工智能
有机化学
钙
作者
Hongkai Zhang,Mingjuan Du,Jia Xie,Xiao Liu,Jingying Sun,Wei Wang,Xiu Xin,Lourival D. Possani,Kyungmoo Yea,Richard A. Lerner
标识
DOI:10.1002/anie.201603052
摘要
Abstract Animal venoms represent a rich source of pharmacologically active peptides that interact with ion channels. However, a challenge to discovering drugs remains because of the slow pace at which venom peptides are discovered and refined. An efficient autocrine‐based high‐throughput selection system was developed to discover and refine venom peptides that target ion channels. The utility of this system was demonstrated by the discovery of novel Kv1.3 channel blockers from a natural venom peptide library that was formatted for autocrine‐based selection. We also engineered a Kv1.3 blocker peptide (ShK) derived from sea anemone to generate a subtype‐selective Kv1.3 blocker with a long half‐life in vivo.
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