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简单有机分子在跨膜环肽纳米管中的传输特性。

Transport properties of simple organic molecules in a transmembrane cyclic peptide nanotube.

作者信息

Xu Jian, Fan Jian Fen, Zhang Ming Ming, Weng Pei Pei, Lin Hui Fang

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, 215123, People's Republic of China.

出版信息

J Mol Model. 2016 May;22(5):107. doi: 10.1007/s00894-016-2965-5. Epub 2016 Apr 15.

Abstract

Multiple molecular dynamics simulations have been performed to explore the transport properties of single methane, methanol, and ethanol molecules through the water-filled transmembrane cyclic peptide nanotube (CPNT) of 8 × (WL)₄-POPE, as well as the potential application of this CPNT in the separation of an alcohol/water mixture. Molecular size and hydrophilicity/hydrophobicity were found to significantly influence molecular diffusion behavior in the channel. Methane and ethanol display more explicit distributions in midplane regions, while methanol mainly occurs in α-plane zones. Methane and ethanol drift faster near an α-plane zone, whereas methanol diffuses uniformly throughout the whole transmembrane region. The dipole orientation of channel methanol is significantly affected by the bare carbonyl groups at the tube mouths and flips mainly in gap 4, whereas the rotation of ethanol is blocked. Ball-shaped hydrophobic methane experiences more flips in gap 4. The PMF (potential of mean force) profiles of the three organic molecules disclose their different diffusion behaviors in the CPNT. Amphiphilic alcohols are able to form direct H-bonds with channel water and the tube. Both single and double water bridges with the tube were observed in the methanol and ethanol systems. The different adsorption behaviors of the alcohols and water in the dehydrated CPNT may lead to the potential application of the CPNT as a means of separating alcohols from water.

摘要

已进行了多次分子动力学模拟,以探究单个甲烷、甲醇和乙醇分子通过8×(WL)₄-POPE的充满水的跨膜环肽纳米管(CPNT)的传输特性,以及该CPNT在醇/水混合物分离中的潜在应用。发现分子大小和亲水性/疏水性对通道中的分子扩散行为有显著影响。甲烷和乙醇在中平面区域表现出更明显的分布,而甲醇主要出现在α平面区域。甲烷和乙醇在α平面区域附近漂移更快,而甲醇在整个跨膜区域均匀扩散。通道甲醇的偶极取向受到管口裸露羰基的显著影响,主要在间隙4中翻转,而乙醇的旋转受到阻碍。球形疏水甲烷在间隙4中经历更多翻转。三种有机分子的平均力势(PMF)曲线揭示了它们在CPNT中的不同扩散行为。两亲性醇能够与通道水和纳米管形成直接氢键。在甲醇和乙醇体系中均观察到与纳米管形成的单水桥和双水桥。醇类和水在脱水CPNT中的不同吸附行为可能导致CPNT作为从水中分离醇类的一种手段的潜在应用。

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