Shapes of hydrophobic thick membranes

T. X. Hoang, J. Banavar, A. Maritan
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Abstract

We introduce and study the behavior of a tethered membrane of non-zero thickness embedded in three dimensions subject to an effective self-attraction induced by hydrophobicity arising from the tendency to minimize the area exposed to a solvent. The phase behavior and the nature of the folded conformations are found to be quite distinct in the small and large solvent size regimes. We demonstrate spontaneous symmetry breaking with the membrane folding along a preferential axis, when the solvent molecules are small compared to the membrane thickness. For large solvent molecule size, a local crinkling mechanism effectively shields the membrane from the solvent, even in relatively flat conformations. We discuss the binding/unbinding transition of a membrane to a wall that serves to shield the membrane from the solvent.
疏水厚膜的形状
我们介绍并研究了嵌入三维空间的非零厚度系留膜的行为,该膜受到由疏水性引起的有效自吸引的影响,这种疏水性源于将暴露在溶剂中的面积最小化的趋势。发现在小溶剂和大溶剂体系中,相行为和折叠构象的性质是非常不同的。我们证明了当溶剂分子比膜厚小时,膜沿优先轴折叠的自发对称破断。对于大的溶剂分子大小,局部起皱机制有效地保护膜从溶剂,即使在相对平坦的构象。我们讨论了膜与保护膜免受溶剂侵害的壁的结合/解结合过渡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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