Department of Chemistry, Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Soft Matter. 2018 Jan 17;14(3):368-378. doi: 10.1039/c7sm02146a.
We report the effect of neutral macromolecular crowders poly(ethylene glycol) (PEG) (8 kDa) and Ficoll (70 kDa) on liquid-liquid phase separation in a polyuridylic acid (polyU)/spermine complex coacervate system. The addition of PEG decreased both the amount of spermine required for phase separation and the coacervation temperature (T). We interpret these effects on phase behavior as arising due to excluded volume and preferential interactions on both the secondary structure/condensation of spermine-associated polyU molecules and on the association of soluble polyU/spermine polyelectrolyte complexes to form coacervate droplets. Examination of coacervates formed in the presence of fluorescently-labeled PEG or Ficoll crowders indicated that Ficoll is accumulated while PEG is excluded from the coacervate phase, which provides further insight into the differences in phase behavior. Crowding agents impact distribution of a biomolecular solute: partitioning of a fluorescently-labeled U15 RNA oligomer into the polyU/spermine coacervates was increased approximately two-fold by 20 wt% Ficoll 70 kDa and by more than two orders of magnitude by 20 wt% PEG 8 kDa. The volume of the coacervate phase decreased in the presence of crowder relative to a dilute buffer solution. These findings indicate that potential impacts of macromolecular crowding on phase behavior and solute partitioning should be considered in model systems for intracellular membraneless organelles.
我们报告了中性大分子拥挤剂聚乙二醇(PEG)(8 kDa)和 Ficoll(70 kDa)对聚尿嘧啶(polyU)/精胺复合物凝聚相分离的影响。PEG 的添加降低了相分离所需的精胺量和共凝聚温度(T)。我们将这些对相行为的影响解释为由于体积排除和优先相互作用,既作用于精胺相关的 polyU 分子的二级结构/凝聚,也作用于可溶性 polyU/精胺聚电解质复合物的缔合以形成凝聚液滴。检查在荧光标记的 PEG 或 Ficoll 拥挤剂存在下形成的凝聚物表明,Ficoll 被积累,而 PEG 被排斥在凝聚相之外,这进一步深入了解相行为的差异。拥挤剂影响生物分子溶质的分布:荧光标记的 U15 RNA 寡聚物在 polyU/精胺凝聚物中的分配增加了约两倍,而在 20 wt% PEG 8 kDa 存在下增加了两个数量级以上。凝聚相的体积在拥挤剂存在下相对于稀缓冲溶液减小。这些发现表明,在无膜细胞内细胞器的模型系统中,应考虑大分子拥挤对相行为和溶质分配的潜在影响。