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Charge-Based Separation of Proteins Using Polyelectrolyte Complexes as Models for Membraneless Organelles

机译:使用聚电解质配合物作为薄磁体细胞器的模型,基于蛋白质的蛋白质分离

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摘要

Membraneless organelles are liquid compartments within cells with different solvent properties than the surrounding environment. This difference in solvent properties is thought to result in function-related selective partitioning of proteins. Proteins have also been shown to accumulate in polyelectrolyte complexes, but whether the uptake in these complexes is selective has not been ascertained yet. Here, we show the selective partitioning of two structurally similar but oppositely charged proteins into polyelectrolyte complexes. We demonstrate that these proteins can be separated from a mixture by altering the polyelectrolyte complex composition and released from the complex by lowering the pH. Combined, we demonstrate that polyelectrolyte complexes can separate proteins from a mixture based on protein charge. Besides providing deeper insight into the selective partitioning in membraneless organelles, potential applications for selective biomolecule partitioning in polyelectrolyte complexes include drug delivery or extraction processes.
机译:膜细胞器是细胞内的液体隔室,其具有不同于周围环境的溶剂性能。认为溶剂性能的这种差异导致蛋白质的功能相关选择性分配。蛋白质还显示出在聚电解质配合物中积聚,但尚未确定这些配合物中的摄取是否是选择性的。这里,我们展示了两个结构相似但相反的带电蛋白的选择性分配到聚电解质配合物中。我们证明这些蛋白质可以通过改变聚电解质复合物组合物通过降低pH从复合物中释放来与混合物分离。结合,我们证明了聚电解质配合物可以将蛋白质与基于蛋白质电荷的混合物分离。除了提供更深入的洞察膜细胞器中的选择性分配外,在聚电解质复合物中选择性生物分子分配的潜在应用包括药物递送或提取过程。

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