Brudar Sandi, Hribar-Lee Barbara
Faculty of Chemistry and Chemical Technology, University of Ljubljana,, Večna pot 113, SI-1000 Ljubljana, Slovenia.
J Phys Chem B. 2021 Mar 18;125(10):2504-2512. doi: 10.1021/acs.jpcb.0c10339. Epub 2021 Mar 3.
Liquid-liquid phase separation (LLPS) of proteins has recently been associated with the onset of numerous diseases. Despite several studies in this area of protein aggregation, buffer-specific effects always seem to be overlooked. In this study we investigated the influence of buffers on the phase stability of hen egg-white lysozyme (HEWL) and its respective protein-protein interactions by measuring the cloud point temperature, second virial coefficient, and interaction diffusion coefficient of several HEWL-buffer solutions (MOPS, phosphate, HEPES, cacodylate) at pH 7.0. The results indicate that the buffer molecules, depending on their hydration, adsorb on the protein surface, and modulate their electrostatic stability. The obtained information was used to extend the recently developed coarse-grained protein model to incorporate buffer-specific effects. Treated by Wertheim's perturbation theory the model qualitatively correctly predicted the experimentally observed phase separation of all investigated HEWL-buffer solutions, and further allowed us to predict the phase stability of protein formulations even in experimentally unattainable conditions. Since the theory can be straightforwardly extended to include multiple components it presents a useful tool to study protein aggregation in crowded cell-like systems.
蛋白质的液-液相分离(LLPS)最近被认为与多种疾病的发生有关。尽管在蛋白质聚集这一领域已有多项研究,但缓冲液特异性效应似乎总是被忽视。在本研究中,我们通过测量几种蛋清溶菌酶(HEWL)-缓冲液溶液(MOPS、磷酸盐、HEPES、二甲胂酸盐)在pH 7.0时的浊点温度、第二维里系数和相互作用扩散系数,研究了缓冲液对HEWL相稳定性及其相应蛋白质-蛋白质相互作用的影响。结果表明,缓冲液分子根据其水合作用吸附在蛋白质表面,并调节其静电稳定性。所获得的信息被用于扩展最近开发的粗粒度蛋白质模型,以纳入缓冲液特异性效应。通过韦特海姆微扰理论处理,该模型定性地正确预测了所有研究的HEWL-缓冲液溶液的实验观察到的相分离,并进一步使我们能够预测即使在实验无法达到的条件下蛋白质制剂的相稳定性。由于该理论可以直接扩展以包括多种成分,它为研究拥挤的类细胞系统中的蛋白质聚集提供了一个有用的工具。