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通过α-α角模拟物的自组装形成环面:超分子环化

Formation of toroids by self-assembly of an α-α corner mimetic: supramolecular cyclization.

作者信息

Podder Debasish, Bera Santu, Debnath Mintu, Das Tanmay, Haldar Debasish

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, West Bengal 741246, India.

出版信息

J Mater Chem B. 2017 Sep 28;5(36):7583-7590. doi: 10.1039/c7tb01711a. Epub 2017 Sep 6.

Abstract

An α-α corner mimetic self-assembles to form a rod-like supramolecular structure which bends and closes end-to-end like a cyclization reaction to form uniform toroids. Each peptide fragment containing l-leucine, α-aminoisobutyric acid (Aib) and l-tyrosine forms rigid 3 helical structures stabilized by multiple intramolecular N-HO hydrogen bonds. Two 3 helices are connected by the spacer 3-aminomethyl-benzylamine and maintain an angular distance of 120° and therefore mimic the α-α corner motif of a protein super secondary structure. The individual α-α corner subunits are themselves regularly interlinked through multiple water mediated intermolecular hydrogen-bonding interactions to form the rod-like supramolecular structure and toroids. The formation of the supramolecular structure has been proven with X-ray crystallography and other spectroscopic techniques. The cyclization of the supramolecular structure and toroid formation were studied by optical microscope, AFM and FE-SEM experiments. Despite other assignments such as exfoliation of graphene from graphite, the compound exhibits significant memory to finally produce the toroids.

摘要

一种α-α转角模拟物自组装形成棒状超分子结构,该结构像环化反应一样弯曲并首尾相连,形成均匀的环面。每个含有L-亮氨酸、α-氨基异丁酸(Aib)和L-酪氨酸的肽片段形成由多个分子内N-HO氢键稳定的刚性三螺旋结构。两个三螺旋通过间隔物3-氨基甲基苄胺连接,并保持120°的角距离,因此模拟了蛋白质超二级结构的α-α转角基序。单个α-α转角亚基本身通过多个水介导的分子间氢键相互作用规则地相互连接,形成棒状超分子结构和环面。超分子结构的形成已通过X射线晶体学和其他光谱技术得到证实。通过光学显微镜、原子力显微镜和场发射扫描电子显微镜实验研究了超分子结构的环化和环面形成。尽管有其他归属,如从石墨中剥离石墨烯,但该化合物表现出显著的记忆效应,最终产生环面。

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