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助溶剂对聚合物水合作用的影响驱动疏水塌缩。

Cosolvent Effects on Polymer Hydration Drive Hydrophobic Collapse.

作者信息

Nayar Divya, van der Vegt Nico F A

机构信息

Eduard-Zintl-Institut für Anorganische und Physikalische Chemie, Center of Smart Interfaces , Technische Universität Darmstadt , Alarich-Weiss-Strasse 10 , 64287 , Darmstadt , Germany.

出版信息

J Phys Chem B. 2018 Apr 5;122(13):3587-3595. doi: 10.1021/acs.jpcb.7b10780. Epub 2018 Feb 22.

Abstract

Water-mediated hydrophobic interactions play an important role in self-assembly processes, aqueous polymer solubility, and protein folding, to name a few. Cosolvents affect these interactions; however, the implications for hydrophobic polymer collapse and protein folding equilibria are not well-understood. This study examines cosolvent effects on the hydrophobic collapse equilibrium of a generic 32-mer hydrophobic polymer in urea, trimethylamine- N-oxide (TMAO), and acetone aqueous solutions using molecular dynamics simulations. Our results unveil a remarkable cosolvent-concentration-dependent behavior. Urea, TMAO, and acetone all shift the equilibrium toward collapsed structures below 2 M cosolvent concentration and, in turn, to unfolded structures at higher cosolvent concentrations, irrespective of the differences in cosolvent chemistry and the nature of cosolvent-water interactions. We find that weakly attractive polymer-water van der Waals interactions oppose polymer collapse in pure water, corroborating related observations reviewed by Ben-Amotz ( Annu. Rev. Phys. Chem. 2016, 67, 617-638). The cosolvents studied in the present work adsorb at the polymer/water interface and expel water molecules into the bulk, thereby effectively removing the dehydration energy penalty that opposes polymer collapse in pure water. At low cosolvent concentrations, this leads to cosolvent-induced stabilization of collapsed polymer structures. Only at sufficiently high cosolvent concentrations, polymer-cosolvent interactions favor polymer unfolding.

摘要

水介导的疏水相互作用在自组装过程、水性聚合物溶解性和蛋白质折叠等诸多方面发挥着重要作用。共溶剂会影响这些相互作用;然而,其对疏水聚合物塌陷和蛋白质折叠平衡的影响尚未得到充分理解。本研究使用分子动力学模拟,考察了共溶剂对一种通用的32聚体疏水聚合物在尿素、三甲胺 - N - 氧化物(TMAO)和丙酮水溶液中的疏水塌陷平衡的影响。我们的结果揭示了一种显著的共溶剂浓度依赖性行为。尿素、TMAO和丙酮在共溶剂浓度低于2 M时都会使平衡向塌陷结构移动,而在较高共溶剂浓度下则会转向未折叠结构,这与共溶剂化学性质及共溶剂 - 水相互作用的性质差异无关。我们发现,在纯水中,聚合物 - 水之间微弱的范德华吸引力会阻碍聚合物塌陷,这与本 - 阿莫茨(Ben - Amotz)综述的相关观察结果一致(《物理化学年度评论》2016年,67卷,617 - 638页)。本研究中考察的共溶剂吸附在聚合物/水界面,并将水分子排挤到本体相中,从而有效消除了纯水中阻碍聚合物塌陷的脱水能量惩罚。在低共溶剂浓度下,这会导致共溶剂诱导塌陷聚合物结构的稳定。只有在足够高的共溶剂浓度下,聚合物 - 共溶剂相互作用才有利于聚合物展开。

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