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Mesophase Separation and Probe Dynamics in Protein-Polyelectrolyte Coacervates

机译:蛋白质-电解质凝聚层的中间相分离和探针动力学

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摘要

Protein–polyelectrolyte coacervates are self-assembling macroscopically monophasic biomacromolecular fluids whose unique properties arise from transient heterogeneities. The structures of coacervates formed at different conditions of pH and ionic strength from poly(dimethyldiallylammonium chloride) and bovine serum albumin (BSA), were probed using fluorescence recovery after photobleaching. Measurements of self-diffusion in coacervates were carried out using fluorescein-tagged BSA, and similarly tagged Ficoll, a non-interacting branched polysaccharide with the same size as BSA. The results are best explained by temporal and spatial heterogeneities, also inferred from static light scattering and cryo-TEM, which indicate heterogeneous scattering centers of several hundred nm. Taken together with previous dynamic light scattering and rheology studies, the results are consistent with the presence of extensive dilute domains in which are embedded partially interconnected 50–700 nm dense domains. At short length scales, protein mobility is unobstructed by these clusters. At intermediate length scales, proteins are slowed down due to tortuosity effects within the blind alleys of the dense domains, and to adsorption at dense/dilute domain interfaces. Finally, at long length scales, obstructed diffusion is alleviated by the break-up of dense domains. These findings are discussed in terms of previously suggested models for protein–polyelectrolyte coacervates. Possible explanations for the origin of mesophase separation are offered.
机译:蛋白质-聚电解质凝聚层是自组装的宏观单相生物大分子流体,其独特的特性来自瞬态异质性。通过光漂白后的荧光恢复,探测了在不同pH和离子强度条件下由聚二甲基二烯丙基氯化铵和牛血清白蛋白(BSA)形成的凝聚层的结构。使用荧光素标记的BSA和类似标记的Ficoll(一种与BSA大小相同的非相互作用的分支多糖)对凝聚层中的自我扩散进行了测量。用时间和空间异质性可以最好地解释结果,这也可以从静态光散射和cryo-TEM推论得出,这表明数百纳米的异质散射中心。结合先前的动态光散射和流变学研究,结果与存在广泛的稀疏域一致,其中嵌入了部分互连的50-700 nm稠密域。在短的规模上,这些簇不阻碍蛋白质的迁移。在中等长度的尺度上,由于致密结构域的盲区中的曲折效应以及致密/稀疏结构域界面的吸附,蛋白质的速度变慢。最后,在长尺度上,致密域的破坏可以缓解受阻扩散。这些发现是根据先前建议的蛋白质-聚电解质凝聚层模型进行讨论的。提供了中间相分离的起源的可能解释。

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