Department of Chemical Engineering, University of Texas at Austin, Austin, Texas 78712, USA.
Soft Matter. 2018 Nov 28;14(46):9475-9488. doi: 10.1039/c8sm01535j.
We employ a combination of the single chain in mean field simulation approach with the solution of Poisson's equation to study the influence of charge heterogeneities on the structure of protein-polyelectrolyte complexes. By adopting a coarse-grained model of representing proteins as charged nanoparticles, we studied the influence of the pattern of charge heterogeneities, net charge, ratio of positive to negative charges on the patches, and the volume fraction of the particles on the structural and aggregation characteristics of proteins in polyelectrolyte solutions. Our results demonstrate that the pattern of charge heterogeneities can exert a significant influence on the resulting characteristics of the aggregates, in some cases leading to a transformation from polymer-bridged complexes into direct particle aggregates driven by the attraction between oppositely charged patches.
我们采用单链平均场模拟方法与泊松方程求解的组合来研究电荷不均匀性对蛋白质-聚电解质复合物结构的影响。通过采用将蛋白质表示为带电纳米颗粒的粗粒化模型,我们研究了电荷不均匀性模式、净电荷、带正电荷和带负电荷的斑块的比例以及颗粒的体积分数对蛋白质在聚电解质溶液中的结构和聚集特性的影响。我们的结果表明,电荷不均匀性模式会对聚集物的最终特性产生显著影响,在某些情况下,由于带相反电荷的斑块之间的吸引力,导致从聚合物桥接复合物转变为直接的颗粒聚集物。