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聚合物结构和带电分子拥挤剂对疏水聚合物塌陷的影响。

Effects of Polymer Architecture and Charged Molecular Crowders on Hydrophobic Polymer Collapse.

作者信息

Rajput Satyendra, Nayar Divya

机构信息

Department of Materials Science and Engineering, Indian Institute of Technology Delhi, New Delhi 110016, India.

出版信息

ACS Polym Au. 2024 May 6;4(4):289-301. doi: 10.1021/acspolymersau.4c00011. eCollection 2024 Aug 14.

Abstract

Accounting for the crowding effects inside a living cell is crucial to obtain a comprehensive view of the biomolecular processes and designing responsive polymer-based materials for biomedical applications. These effects have long been synonymous with the entropic volume exclusion effects. The role of soft, attractive intermolecular interactions remains elusive. Here, we investigate the effects of model cationic and anionic hydrophobic molecular crowders on the collapse equilibrium of uncharged model polymers using molecular dynamics simulations. Particularly, the effect of polymer architecture is explored where a 50-bead linear polymer model (Poly-I) and a branched polymer model (Poly-II) with nonpolar side chains are examined. The collapse of Poly-I is found to be highly favorable than in Poly-II in neat water. Addition of anionic crowders strengthens hydrophobic collapse in Poly-I, whereas collapse of Poly-II is only slightly favored over that in neat water. The thermodynamic driving forces are quite distinct in water. Collapse of Poly-I is driven by the favorable polymer-solvent entropy change (due to loss of waters to bulk on collapse), whereas collapse of Poly-II is driven by the favorable polymer-solvent energy change (due to favorable intrapolymer energy). The anionic crowders support the entropic mechanism for Poly-I by acting like surfactants, redirecting water dipoles toward themselves, and preferentially adsorbing on the Poly-I surface. In the case of Poly-II, the anionic crowders are loosely bound to polymer side chains, and loss of crowders and waters to the bulk on polymer collapse reduces the entropic penalty, thereby making collapse free energy slightly more favorable than in neat water. The results indicate the discriminating behavior of anionic crowders to strengthen the hydrophobic collapse. It is related to the structuring of water molecules around the termini and the central region of the two polymers. The results address the modulation of hydrophobic hydration by weakly hydrated ionic hydrophobes at crowded concentrations.

摘要

考虑活细胞内的拥挤效应对于全面了解生物分子过程以及设计用于生物医学应用的基于聚合物的响应材料至关重要。长期以来,这些效应一直与熵体积排除效应同义。软的、有吸引力的分子间相互作用的作用仍然难以捉摸。在这里,我们使用分子动力学模拟研究了模型阳离子和阴离子疏水分子拥挤剂对不带电模型聚合物塌缩平衡的影响。特别地,研究了聚合物结构的影响,其中研究了具有非极性侧链的50珠线性聚合物模型(Poly-I)和支化聚合物模型(Poly-II)。发现在纯水中,Poly-I的塌缩比Poly-II更有利。添加阴离子拥挤剂会增强Poly-I中的疏水塌缩,而Poly-II的塌缩仅比在纯水中略受青睐。在水中,热力学驱动力截然不同。Poly-I的塌缩由有利的聚合物-溶剂熵变驱动(由于塌缩时水向本体的损失),而Poly-II的塌缩由有利的聚合物-溶剂能量变化驱动(由于聚合物内有利的能量)。阴离子拥挤剂通过像表面活性剂一样起作用,将水偶极子引向自身,并优先吸附在Poly-I表面,从而支持Poly-I的熵机制。在Poly-II的情况下,阴离子拥挤剂松散地结合在聚合物侧链上,并且在聚合物塌缩时拥挤剂和水向本体的损失降低了熵罚,从而使塌缩自由能比在纯水中略更有利。结果表明阴离子拥挤剂在增强疏水塌缩方面的区分行为。它与两种聚合物末端和中心区域周围水分子的结构有关。结果解决了在拥挤浓度下弱水合离子疏水物对疏水水合作用的调节问题。

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