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多蛋白混合物中复合凝聚的选择性

Selectivity of Complex Coacervation in Multiprotein Mixtures.

作者信息

Ahn So Yeon, Obermeyer Allie C

机构信息

Department of Chemical Engineering, Columbia University, New York, New York 10027, United States.

出版信息

JACS Au. 2024 Sep 17;4(10):3800-3812. doi: 10.1021/jacsau.4c00399. eCollection 2024 Oct 28.

Abstract

Liquid-liquid phase separation of biomolecules is increasingly recognized as being relevant to various cellular functions, and complex coacervation of biomacromolecules, particularly proteins, is emerging as a key mechanism for this phenomenon. Complex coacervation is also being explored as a potential protein purification method due to its potential scalability, aqueous operation, and ability to produce a highly concentrated product. However, to date, most studies of complex coacervation have evaluated the phase behavior of a binary mixture of two oppositely charged macromolecules. Therefore, a comprehensive understanding of the phase behavior of complex biological mixtures is yet to be established. To address this, a panel of engineered proteins was designed to allow for quantitative analysis of the complex coacervation of individual proteins within a multicomponent mixture. The behavior of individual proteins was evaluated using a defined mixture of proteins that mimics the charge profile of the proteome. To allow for the direct quantification of proteins in each phase, spectrally separated fluorescent proteins were used to construct the protein mixture. From this quantitative analysis, we observed that protein coacervation was synchronized in the mixture, which was distinctive from the behavior when each protein was evaluated in a single-protein system. Subtle differences in biophysical properties between the proteins, such as the ionization of individual charged residues and overall charge density, became noticeable in the mixture, which allowed us to elucidate parameters for protein complex coacervation. With this understanding, we successfully designed methods to enrich a range of proteins of interest from a mixture of proteins.

摘要

生物分子的液-液相分离与各种细胞功能的相关性日益受到认可,生物大分子(尤其是蛋白质)的复合凝聚正成为这一现象的关键机制。由于其潜在的可扩展性、水性操作以及生产高浓度产品的能力,复合凝聚也正被探索作为一种潜在的蛋白质纯化方法。然而,迄今为止,大多数复合凝聚研究都评估了两种带相反电荷的大分子二元混合物的相行为。因此,对复杂生物混合物相行为的全面理解尚未建立。为了解决这个问题,设计了一组工程蛋白,以便对多组分混合物中单个蛋白质的复合凝聚进行定量分析。使用模拟蛋白质组电荷分布的特定蛋白质混合物评估单个蛋白质的行为。为了直接定量各相中蛋白质,使用光谱分离的荧光蛋白构建蛋白质混合物。通过这种定量分析,我们观察到混合物中蛋白质凝聚是同步的,这与在单蛋白系统中评估每种蛋白质时的行为不同。蛋白质之间生物物理性质的细微差异,如单个带电残基的电离和整体电荷密度,在混合物中变得明显,这使我们能够阐明蛋白质复合凝聚的参数。基于这一认识,我们成功设计了从蛋白质混合物中富集一系列目标蛋白质的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f63/11522905/1d53bea3504d/au4c00399_0006.jpg

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