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关于水+类弹性蛋白多肽混合物的液体混合:双峰折返相行为

On the liquid demixing of water + elastin-like polypeptide mixtures: bimodal re-entrant phase behaviour.

作者信息

Lindeboom Tom, Zhao Binwu, Jackson George, Hall Carol K, Galindo Amparo

机构信息

Department of Chemical Engineering, Centre for Process Systems Engineering and Institute for Molecular Science and Engineering, South Kensington Campus, Imperial College London, London SW7 2AZ, UK.

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, North Carolina 27606, USA.

出版信息

Phys Chem Chem Phys. 2021 Mar 18;23(10):5936-5944. doi: 10.1039/d0cp05013j.

Abstract

Water + elastin-like polypeptides (ELPs) exhibit a transition temperature below which the chains transform from collapsed to expanded states, reminiscent of the cold denaturation of proteins. This conformational change coincides with liquid-liquid phase separation. A statistical-thermodynamics theory is used to model the fluid-phase behavior of ELPs in aqueous solution and to extrapolate the behavior at ambient conditions over a range of pressures. At low pressures, closed-loop liquid-liquid equilibrium phase behavior is found, which is consistent with that of other hydrogen-bonding solvent + polymer mixtures. At pressures evocative of deep-sea conditions, liquid-liquid immiscibility bounded by two lower critical solution temperatures (LCSTs) is predicted. As pressure is increased further, the system exhibits two separate regions of closed-loop of liquid-liquid equilibrium (LLE). The observation of bimodal LCSTs and two re-entrant LLE regions herald a new type of binary global phase diagram: Type XII. At high-ELP concentrations the predicted phase diagram resembles a protein pressure denaturation diagram; possible "molten-globule"-like states are observed at low concentration.

摘要

水与类弹性蛋白多肽(ELPs)呈现出一个转变温度,低于该温度时,链从塌陷状态转变为伸展状态,这让人联想到蛋白质的冷变性。这种构象变化与液-液相分离同时发生。运用统计热力学理论对ELPs在水溶液中的流体相行为进行建模,并推断其在一系列压力下的环境条件下的行为。在低压下,发现了闭环液-液平衡相行为,这与其他氢键溶剂+聚合物混合物的行为一致。在深海条件下的压力下,预测会出现由两个下临界溶液温度(LCSTs)界定的液-液不混溶现象。随着压力进一步增加,系统呈现出两个独立的液-液平衡(LLE)闭环区域。双峰LCSTs和两个折返LLE区域的观测预示着一种新型的二元全局相图:XII型。在高ELP浓度下,预测的相图类似于蛋白质压力变性图;在低浓度下观察到了可能的“熔球”状状态。

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