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首页> 外文期刊>Journal of physical chemistry letters >Complete Phase Diagram for Liquid-Liquid Phase Separation of Intrinsically Disordered Proteins
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Complete Phase Diagram for Liquid-Liquid Phase Separation of Intrinsically Disordered Proteins

机译:本质无序蛋白质液相分离的完整相图

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摘要

A number of intrinsically disordered proteins have been shown to self assemble via liquid liquid phase separation into protein-rich and dilute phases. The resulting coacervates can have important biological functions, and the ability to form these assemblies is dictated by the protein's primary amino acid sequence as well as by the solution conditions. We present a complete phase diagram for the simple coacervation of a polyampholyte intrinsically disordered protein using a field-theoretic simulation approach. We show that differences in the primary amino acid sequence and in the distribution of charged amino acids along the sequence lead to differences in the phase window for coacervation, with block-charged sequences having a larger coacervation window than sequences with a random patterning of charges. The model also captures how changing solution conditions modifies the phase diagram and can serve to guide experimental studies.
机译:已经证明了许多本质无序的蛋白质通过液体液相分离将自组装成富含蛋白质和稀阶段。 所得的凝聚层可以具有重要的生物学功能,并且形成这些组件的能力由蛋白质的伯氨基酸序列以及通过溶液条件决定。 我们使用现场理论模拟方法提出了一种完整的相位图,用于简单地凝聚多晶硅聚合物本机蛋白质。 我们表明初级氨基酸序列和沿序列的带电氨基酸的分布的差异导致相位窗口的差异,其具有比具有随机图案化的序列较大的凝聚窗口的嵌段序列。 该模型还捕获改变解决方案条件如何修改相图,并且可以用于指导实验研究。

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