扁桃体
化学
拟肽
分子
自组装
氢键
配体(生物化学)
结晶学
立体化学
水溶液中的金属离子
金属
分子间力
肽
组合化学
受体
有机化学
生物化学
作者
Totan Ghosh,Natalia Fridman,Monica Kosa,Galia Maayan
标识
DOI:10.1002/anie.201800583
摘要
Abstract Metal–ligand coordination is a key interaction in the self‐assembly of both biopolymers and synthetic oligomers. Although the binding of metal ions to synthetic proteins and peptides is known to yield high‐order structures, the self‐assembly of peptidomimetic molecules upon metal binding is still challenging. Herein we explore the self‐assembly of three peptoid trimers bearing a bipyridine ligand at their C‐terminus, a benzyl group at their N‐terminus, and a polar group (N‐ethyl‐R) in the middle position (R=OH, OCH 3 , or NH 2 ) upon Cu 2+ coordination. X‐ray diffraction analysis revealed unique, highly symmetric, dinuclear cyclic structure or aqua‐bridged dinuclear double‐stranded peptoid helicates, formed by the self‐assembly of two peptoid molecules with two Cu 2+ ions. Only the macrocycle with the highest number of intermolecular hydrogen bonds is stable in solution, while the other two disassemble to their corresponding monometallic complexes.
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