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易聚集片段的暴露是淀粉样纤维形成的必要条件。

Exposure of Aggregation-Prone Segments is the Requirement for Amyloid Fibril Formation.

作者信息

Pramanik Shreya, Ahmad Basir

机构信息

Biophysical Chemistry & Structural Biology laboratory, UM-DAE Centre for Excellence in Basic Sciences, University of Mumbai campus, Vidyanagari, Kalina, Mumbai, India.

出版信息

Curr Protein Pept Sci. 2018;19(10):1024-1035. doi: 10.2174/1389203719666180521091647.

Abstract

Arranging into well-organized fibrillar aggregate, commonly known as amyloid fibril is an inherent property of any polypeptide chain. Amyloid fibrils are associated with a number of severe human pathologies like the Alzheimer's disease, Parkinson's disease, type2 diabetes and many more. Recent studies suggest that most of the fibrils are inert and extremely stable, thus could be used for the bionanotechnological applications. As the native state is protected by evolution from aggregation under physiological condition, understanding the structure of aggregation precursor state (APS) will be of extreme importance to decode mechanism of its formation and prevention. This review article includes the recent studies of identification and characterization of possible conformations of proteins which can act as APS. The literature regarding the research in this field revealed that any conformation ranging from native-like state to completely unfolded state could be an APS. The structural characteristics of the APS depend on the protein and on its surrounding environment. From this review of literatures, we conclude that exposure of aggregation-prone segments is the requirement for amyloid fibril formation and the amyloid state seems to be the most stable known physical state of the proteins. This means all conformations of proteins with exposed aggregation-prone segments can promote intermolecular interactions and channel to amyloid fibril pathway to acquire their minimum energy state.

摘要

排列成组织良好的纤维状聚集体,即通常所说的淀粉样纤维,是任何多肽链的固有特性。淀粉样纤维与许多严重的人类疾病相关,如阿尔茨海默病、帕金森病、2型糖尿病等等。最近的研究表明,大多数纤维是惰性的且极其稳定,因此可用于生物纳米技术应用。由于天然状态在生理条件下受到进化保护而不发生聚集,了解聚集前体状态(APS)的结构对于解读其形成和预防机制至关重要。这篇综述文章包括了对可能作为APS的蛋白质构象进行鉴定和表征的最新研究。该领域的研究文献表明,从类似天然状态到完全展开状态的任何构象都可能是APS。APS的结构特征取决于蛋白质及其周围环境。通过对这些文献的综述,我们得出结论,易聚集片段的暴露是淀粉样纤维形成的必要条件,并且淀粉样状态似乎是蛋白质已知的最稳定物理状态。这意味着具有暴露的易聚集片段的蛋白质的所有构象都可以促进分子间相互作用,并引导至淀粉样纤维途径以获得其最低能量状态。

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