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Chemical Kinetics for Bridging Molecular Mechanisms and Macroscopic Measurements of Amyloid Fibril Formation
Annual Review of Physical Chemistry ( IF 14.7 ) Pub Date : 2018-04-20 00:00:00 , DOI: 10.1146/annurev-physchem-050317-021322
Thomas C T Michaels 1, 2 , Anđela Šarić 3 , Johnny Habchi 1 , Sean Chia 1 , Georg Meisl 1 , Michele Vendruscolo 1 , Christopher M Dobson 1 , Tuomas P J Knowles 1, 4
Affiliation  

Understanding how normally soluble peptides and proteins aggregate to form amyloid fibrils is central to many areas of modern biomolecular science, ranging from the development of functional biomaterials to the design of rational therapeutic strategies against increasingly prevalent medical conditions such as Alzheimer's and Parkinson's diseases. As such, there is a great need to develop models to mechanistically describe how amyloid fibrils are formed from precursor peptides and proteins. Here we review and discuss how ideas and concepts from chemical reaction kinetics can help to achieve this objective. In particular, we show how a combination of theory, experiments, and computer simulations, based on chemical kinetics, provides a general formalism for uncovering, at the molecular level, the mechanistic steps that underlie the phenomenon of amyloid fibril formation.

中文翻译:


桥接分子机制的化学动力学和淀粉样原纤维形成的宏观测量

了解通常可溶性肽和蛋白质如何聚集形成淀粉样蛋白原纤维是现代生物分子科学许多领域的核心,从功能性生物材料的开发到针对阿尔茨海默病和帕金森病等日益普遍的疾病的合理治疗策略的设计。因此,非常需要开发模型来机械地描述淀粉样原纤维如何从前体肽和蛋白质形成。在这里,我们回顾和讨论化学反应动力学的想法和概念如何帮助实现这一目标。特别是,我们展示了基于化学动力学的理论、实验和计算机模拟的结合如何提供一种通用的形式主义来在分子水平上揭示,

更新日期:2018-04-20
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