Paradoxes and wonders of intrinsic disorder: Stability of instability.

Intrinsically disordered proteins Pub Date : 2017-10-16 eCollection Date: 2017-01-01 DOI:10.1080/21690707.2017.1327757
Vladimir N Uversky
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引用次数: 27

Abstract

This article continues a series of short comments on the paradoxes and wonders of the protein intrinsic disorder phenomenon by introducing the "stability of instability" paradox. Intrinsically disordered proteins (IDPs) are characterized by the lack of stable 3D-structure, and, as a result, have an exceptional ability to sustain exposure to extremely harsh environmental conditions (an illustration of the "you cannot break what is already broken" principle). Extended IDPs are known to possess extreme thermal and acid stability and are able either to keep their functionality under these extreme conditions or to rapidly regain their functionality after returning to the normal conditions. Furthermore, sturdiness of intrinsic disorder and its capability to "ignore" harsh conditions provides some interesting and important advantages to its carriers, at the molecular (e.g., the cell wall-anchored accumulation-associated protein playing a crucial role in intercellular adhesion within the biofilm of Staphylococcus epidermidis), supramolecular (e.g., protein complexes, biologic liquid-liquid phase transitions, and proteinaceous membrane-less organelles), and organismal levels (e.g., the recently popularized case of the microscopic animals, tardigrades, or water bears, that use intrinsically disordered proteins to survive desiccation).

内在无序的悖论与奇迹:不稳定中的稳定。
本文通过引入“不稳定性的稳定性”悖论,继续对蛋白质内在无序现象的悖论和奇迹进行一系列简短的评论。内在无序蛋白(IDPs)的特点是缺乏稳定的3d结构,因此具有特殊的能力,可以承受极端恶劣的环境条件(这是“你不能破坏已经破坏的”原则的例证)。已知扩展型IDPs具有极端的热稳定性和酸稳定性,并且能够在这些极端条件下保持其功能,或者在返回正常条件后迅速恢复其功能。此外,内在无序的坚固性及其“忽略”恶劣条件的能力为其载体提供了一些有趣和重要的优势,在分子(例如,细胞壁锚定积累相关蛋白在表皮葡萄球菌生物膜内的细胞间粘附中起着至关重要的作用),超分子(例如,蛋白质复合物,生物液-液相变和蛋白质无膜细胞器)和有机体水平(例如,最近流行的微观动物的例子,缓步动物,或水熊,它们使用内在无序的蛋白质来生存干燥)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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