合理设计
亲脂性
化学
组合化学
锌
螯合作用
配体(生物化学)
离子载体
膜
水溶液中的金属离子
金属
纳米技术
立体化学
生物化学
有机化学
材料科学
受体
作者
Kei Yamada,Arghya Deb,Veronika M. Shoba,Donghyun Lim,Basudeb Maji,Ashley E. Modell,Amit Choudhary
标识
DOI:10.1002/anie.202201698
摘要
Ionophores transport ions across biological membranes and have wide-ranging applications, but a platform for their rapid development does not exist. We report a platform for developing ionophores from metal-ion chelators, which are readily available with wide-ranging affinities and specificities, and structural data that can aid rational design. Specifically, we fine-tuned the binding affinity and lipophilicity of a ZnII -chelating ligand by introducing silyl groups proximal to the ZnII -binding pocket, which generated ionophores that performed better than most of the currently known ZnII ionophores. Furthermore, these silicon-based ionophores were specific for ZnII over other metals and exhibited better antibacterial activity and less toxicity to mammalian cells than several known ZnII ionophores, including pyrithione. These studies establish rational design principles for the rapid development of potent and specific ionophores and a new class of antibacterial agents.
科研通智能强力驱动
Strongly Powered by AbleSci AI