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首页> 外文期刊>The Journal of Chemical Physics >Dynamic behaviors and transport properties of ethanol molecules in transmembrane cyclic peptide nanotubes
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Dynamic behaviors and transport properties of ethanol molecules in transmembrane cyclic peptide nanotubes

机译:跨膜环肽纳米管中乙醇分子的动力学行为和传输特性

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Classical molecular dynamics simulations have been performed to investigate the dynamic behaviors and transport properties of ethanol molecules in transmembrane cyclic peptide nanotubes (CPNTs) with various radii, i.e., 8 x (W (L) under bar)(n=3,4,5)/POPE. The results show that ethanol molecules spontaneously fill the octa-and deca-CPNTs, but not the hexa-CPNT. In the octa-CPNT, ethanol molecules are trapped at individual gaps with their carbon skeletons perpendicular to the tube axis and hydroxyl groups towards the tube wall, forming a broken single-file chain. As the channel radius increases, ethanol molecules inside the deca-CPNT tend to form a tubular layer and the hydroxyl groups mainly stretch towards the tube axis. Computations of diffusion coefficients indicate that ethanol molecules in the octa-CPNT nearly lost their diffusion abilities, while those in the deca-CPNT diffuse as 4.5 times as in a (8, 8) carbon nanotube with a similar tube diameter. The osmotic and diffusion permeabilities (p(f) and p(d), respectively) of the octa- and deca-CPNTs transporting ethanol were deduced for the first time. The distributions of the gauche and trans conformers of ethanol molecules in two CPNTs are quite similar, both with approximately 57% gauche conformers. The non-bonded interactions of channel ethanol with a CPNT wall and surrounding ethanol were explored. The potential of mean force elucidates the mechanism underlying the transporting characteristics of channel ethanol in a transmembrane CPNT. (C) 2015 AIP Publishing LLC.
机译:进行经典的分子动力学模拟以研究乙醇分子在跨半径为8 x(W(L)bar)(n = 3,4,5)的跨膜环状肽纳米管(CPNT)中的动力学行为和传输特性)/教皇。结果表明,乙醇分子自发地充满了八-和十-CPNT,而不是六-CPNT。在octa-CPNT中,乙醇分子被捕集在各个缝隙中,其碳骨架垂直于管轴,羟基朝向管壁,从而形成断裂的单链。随着通道半径的增加,十聚体-CPNT内的乙醇分子倾向于形成管状层,并且羟基主要向管轴延伸。扩散系数的计算表明,octa-CPNT中的乙醇分子几乎失去了扩散能力,而deca-CPNT中的乙醇分子的扩散是管径相似的(8,8)碳纳米管的4.5倍。首次推导了运输乙醇的八-和十-CPNT的渗透和扩散渗透率(分别为p(f)和p(d))。两种CPNT中乙醇分子的gauche和反式构象异构体的分布非常相似,均具有约57%的gauche构象异构体。探索了通道乙醇与CPNT壁和周围乙醇之间的非键相互作用。平均力的潜力阐明了跨膜CPNT中通道乙醇运输特性的潜在机理。 (C)2015 AIP Publishing LLC。

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