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首页> 外文期刊>Il Nuovo Cimento della Societa Italiana di Fisica, C. Geophysics and space physics >Electrostatics promotes molecular crowding and selects the aggregation pathway in fibril-forming protein solutions
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Electrostatics promotes molecular crowding and selects the aggregation pathway in fibril-forming protein solutions

机译:静电促进分子拥挤并选择原纤维形成蛋白溶液中的聚集途径

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摘要

The role of intermolecular interaction in fibril-forming protein solutions and its relation with molecular conformation are crucial aspects for the control and inhibition of amyloid structures. Here, we study the fibril formation and the protein-protein interactions for two proteins at acidic pH, lysozyme and α-chymotrypsinogen. By using light scattering experiments and the Kirkwood-Buff integral approach, we show how concentration fluctuations are damped even at moderate protein concentrations by the dominant long-ranged electrostatic repulsion, which determines an effective crowded environment. In denaturing conditions, electrostatic repulsion keeps the monomeric solution in a thermodynamically metastable state, which is escaped through kinetically populated conformational sub-states. This explains how electrostatics acts as a gatekeeper in selecting a specific aggregation pathway.
机译:分子间相互作用在原纤维形成蛋白溶液中的作用及其与分子构象的关系是控制和抑制淀粉样蛋白结构的关键方面。在这里,我们研究了在酸性pH值下两种蛋白质(溶菌酶和α-胰凝乳蛋白酶原)的原纤维形成和蛋白质-蛋白质相互作用。通过使用光散射实验和Kirkwood-Buff积分方法,我们证明了即使在中等蛋白质浓度下,主要的远程静电排斥也能抑制浓度波动,从而确定有效的拥挤环境。在变性条件下,静电斥力将单体溶液保持在热力学亚稳态,并通过动力学填充的构象子态逸出。这解释了静电在选择特定聚集途径时如何充当网守。

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