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蛋白质聚集动力学、机制及曲线拟合:文献综述

Protein aggregation kinetics, mechanism, and curve-fitting: a review of the literature.

作者信息

Morris Aimee M, Watzky Murielle A, Finke Richard G

机构信息

Department of Chemistry, Colorado State University, Fort Collins, CO 80523, USA.

出版信息

Biochim Biophys Acta. 2009 Mar;1794(3):375-97. doi: 10.1016/j.bbapap.2008.10.016. Epub 2008 Nov 11.

Abstract

Protein aggregation is an important phenomenon that alternatively is part of the normal functioning of nature or, central to this review, has negative consequences via its hypothesized central role in neurodegenerative diseases. A key to controlling protein aggregation is understanding the mechanism(s) of protein aggregation. Kinetic studies, data curve-fitting, and analysis are, in turn, keys to rigorous mechanistic studies. The main goal of this review is to analyze and report on the primary literature contributions to protein aggregation kinetics, mechanism, and curve-fitting. Following a brief introduction, the multiple different physical methods that have been employed to follow protein aggregation are presented and briefly discussed. Next, key information on the starting proteins and especially the products, and any detectable intermediates, involved in protein aggregation are presented. This is followed by tabulation (in the Supporting information) and discussion (in the main text), of the many approaches in the literature striving to determine the kinetics and mechanism of protein aggregation. It is found that these approaches can be broadly divided into three categories: (i) kinetic and thermodynamic, (ii) empirical, and (iii) other approaches. The first two approaches are the main focus of the present contribution, their goal being curve-fitting the available kinetic data and obtaining quantitative rate constants characterizing the nucleation, growth, and any other parts of the overall aggregation process. The large literature of protein aggregation is distilled down to five classes of postulated mechanisms: i) the subsequent monomer addition mechanism, ii) the reversible association mechanism, iii) prion aggregation mechanisms, iv) an "Ockham's razor"/minimalistic model first presented in 1997 and known as the Finke-Watzky 2-step model, and v) quantitative structure activity relationship models. These five classes of mechanisms are reviewed in detail in historical order; where possible corresponding kinetic equations, and fits to aggregation data via the proposed mechanisms, are analyzed and discussed. The five classes of mechanisms are then analyzed and discussed in terms of their similarities and differences to one another. Also included is a brief discussion of selected empirical approaches used to investigate protein aggregation. Three problem areas in the protein aggregation kinetic and mechanistic studies area are identified, and a Summary and Conclusions section is provided en route to moving the field forward towards the still unachieved goal of unequivocal elucidation of the mechanism(s) of protein aggregation.

摘要

蛋白质聚集是一种重要现象,它既是自然正常功能的一部分,或者在本综述的核心内容中,由于其在神经退行性疾病中假定的核心作用而具有负面后果。控制蛋白质聚集的关键在于理解蛋白质聚集的机制。而动力学研究、数据曲线拟合及分析,则依次是严格的机制研究的关键。本综述的主要目标是分析和报告蛋白质聚集动力学、机制及曲线拟合方面的主要文献贡献。在简要介绍之后,展示并简要讨论了用于跟踪蛋白质聚集的多种不同物理方法。接下来,介绍了有关起始蛋白质尤其是产物以及蛋白质聚集中涉及的任何可检测中间体的关键信息。随后在支持信息中以表格形式呈现,并在正文部分进行讨论,介绍了文献中许多致力于确定蛋白质聚集动力学和机制的方法。结果发现,这些方法大致可分为三类:(i)动力学和热力学方法,(ii)经验方法,以及(iii)其他方法。前两种方法是本论文的主要关注点,其目标是对可用的动力学数据进行曲线拟合,并获得表征成核、生长以及整个聚集过程中任何其他部分的定量速率常数。大量的蛋白质聚集文献被提炼为五类假定机制:i)后续单体添加机制,ii)可逆缔合机制,iii)朊病毒聚集机制,iv)1997年首次提出的“奥卡姆剃刀”/简约模型,即芬克 - 瓦茨基两步模型,以及v)定量构效关系模型。这五类机制按历史顺序进行详细综述;在可能的情况下,分析并讨论了相应的动力学方程以及通过所提出的机制对聚集数据的拟合情况。然后从它们彼此的异同角度对这五类机制进行分析和讨论。还包括对用于研究蛋白质聚集的选定经验方法的简要讨论。确定了蛋白质聚集动力学和机制研究领域中的三个问题领域,并在推动该领域朝着仍未实现的明确阐明蛋白质聚集机制这一目标前进的过程中提供了总结与结论部分。

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