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High hydrostatic pressure as a tool to study protein aggregation and amyloidosis

机译:高静水压作为研究蛋白质聚集和淀粉样变性的工具

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摘要

Aggregation of proteins is a serious problem, affecting both industrial production of proteins and human health. Despite recent advances in the theories and experimental techniques available to address understanding of protein aggregation processes, mechanisms of aggregate formation have proved challenging to study. This is in part because the typical irreversibility of protein aggregation processes at atmospheric conditions complicates analysis of their kinetics and thermodynamics. Because high hydrostatic pressures act to disfavor the hydrophobic and electrostatic interactions that cause protein aggregation, studies conducted under high hydrostatic pressures may allow protein aggregates to be formed reversibly, enabling thermodynamic and kinetic parameters to be measured in greater detail. Although application of high hydrostatic pressures to protein aggregation problems is rather recent, a growing literature, reviewed herein, suggests that high pressure may be a useful tool for both understanding protein aggregation and reversing it in industrial applications.
机译:蛋白质的聚集是一个严重的问题,影响到蛋白质的工业生产和人类健康。尽管可用于解决对蛋白质聚集过程的理解的理论和实验技术方面取得了最新进展,但是聚集体形成的机制已证明对研究具有挑战性。部分原因是在大气条件下蛋白质聚集过程的典型不可逆性使它们的动力学和热力学分析变得复杂。由于高静水压力会不利于引起蛋白质聚集的疏水和静电相互作用,因此在高静水压力下进行的研究可能使蛋白质聚集体可逆地形成,从而可以更详细地测量热力学和动力学参数。尽管将高静水压力应用于蛋白质聚集问题是最近的,但是本文中回顾的不断增长的文献表明,高压可能是理解蛋白质聚集并在工业应用中逆转蛋白质聚集的有用工具。

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