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人工合成短杆菌肽

Artificial Gramicidins.

作者信息

Sun Zhanhu, Barboiu Mihail

机构信息

Institut Europeen des Membranes, Adaptive Supramolecular Nanosystems Group, University of Montpellier, ENSCM-CNRS, Montpellier, France.

出版信息

Front Chem. 2019 Sep 4;7:611. doi: 10.3389/fchem.2019.00611. eCollection 2019.

Abstract

Gramicidin A, gA is a natural protein channel with a well-established, simple structure, and function: cations and water are transported together along the channel. Importantly, the dipolar orientation of water molecules within the pore can influence the ionic translocation. The need for simple artificial systems biomimicking the gA functions has been desired and they were until last decade unknown. Several interesting papers highlighted in this minireview have been published and supramolecular systems described here can be considered as primitive gA mimics. The dynamics of ions/water and protons confined within gA channels is difficult to structurally analyze and simpler artificial systems designed at the atomic level would have a crucial relevance for understanding such translocation scenarios at the molecular level. The directional ordering of confined water-wires or ions, as observed inside primitive gA channels is reminiscent with specific interactions between water and the natural gA. This dipolar orientation may induce specific dielectric properties which most probably influence the biological recognition at bio-interfaces or translocation of charge species along artificial channel pathways.

摘要

短杆菌肽A(gA)是一种天然蛋白质通道,其结构和功能成熟且简单:阳离子和水沿着通道一起运输。重要的是,孔内水分子的偶极取向会影响离子转运。人们一直渴望有能够模拟gA功能的简单人工系统,而直到过去十年它们还不为人所知。本综述中重点介绍的几篇有趣论文已经发表,这里描述的超分子系统可被视为原始的gA模拟物。限制在gA通道内的离子/水和质子的动力学很难进行结构分析,而在原子水平设计的更简单人工系统对于在分子水平理解这种转运情况至关重要。在原始gA通道内观察到的受限水线或离子的定向排列让人联想到水与天然gA之间的特定相互作用。这种偶极取向可能会诱导特定的介电特性,这很可能会影响生物界面处的生物识别或电荷物种沿人工通道途径的转运。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d03/6738023/3b95fece60b2/fchem-07-00611-g0003.jpg

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