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Effect of polyethylene glycol on the liquid-liquid phase transition in aqueous protein solutions

机译:聚乙二醇对蛋白质水溶液液相-液相转变的影响

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We have studied the effect of polyethylene glycol (PEG) on the liquid-liquid phase separation (LLPS) of aqueous solutions of bovine γD-crystallin (γD), a protein in the eye lens. We observe that the phase separation temperature increases with both PEG concentration and PEG molecular weight. PEG partitioning, which is the difference between the PEG concentration in the two coexisting phases, has been measured experimentally and observed to increase with PEG molecular weight. The measurements of both LLPS temperature and PEG partitioning in the ternary γD-PEG-water systems are used to successfully predict the location of the liquid-liquid phase boundary of the binary γD-water system. We show that our LLPS measurements can be also used to estimate the protein solubility as a function of the concentration of crystallizing agents. Moreover, the slope of the tie-lines and the dependence of LLPS temperature on polymer concentration provide a powerful and sensitive check of the validity of excluded volume models. Finally, we show that the increase of the LLPS temperature with PEG concentration is due to attractive protein-protein interactions.
机译:我们已经研究了聚乙二醇(PEG)对牛γD-晶状体蛋白(γD)(一种在晶状体中的蛋白质)水溶液的液相-液相分离(LLPS)的影响。我们观察到相分离温度随着PEG浓度和PEG分子量的增加而增加。 PEG分配是两个共存相中PEG浓度之间的差异,已通过实验进行了测量,并观察到随着PEG分子量的增加而增加。三元γD-PEG-水系统中LLPS温度和PEG分配的测量值可用于成功预测二元γD-水系统的液-液相边界的位置。我们表明,我们的LLPS测量值还可用于估计蛋白质溶解度与结晶剂浓度的关系。此外,连接线的斜率和LLPS温度对聚合物浓度的依赖性为排除体积模型的有效性提供了有力而敏感的检查。最后,我们表明LLPS温度随PEG浓度的增加是由于有吸引力的蛋白质间相互作用。

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