我的蛋白质有多混乱,它的混乱是为了什么?通过蛋白质宇宙的“黑暗面”的指南。

Intrinsically disordered proteins Pub Date : 2016-12-21 eCollection Date: 2016-01-01 DOI:10.1080/21690707.2016.1259708
Philippe Lieutaud, François Ferron, Alexey V Uversky, Lukasz Kurgan, Vladimir N Uversky, Sonia Longhi
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引用次数: 87

摘要

在过去的20年里,越来越明显的是,大量的蛋白质要么是完全无序的,要么是部分无序的。本质上无序的蛋白质缺乏稳定的三维结构,普遍存在并实现基本的生物功能。它们的构象异质性编码在它们的氨基酸序列中,从而允许基于这些序列的性质来识别内在无序的蛋白质或区域。无序区域的识别有助于蛋白质的功能注释,并有助于描绘适合x射线结晶结构测定的蛋白质结构域的边界。本文讨论了目前用于传播实验和假设的紊乱注释,预测紊乱和识别诱导折叠相关区域的数据库和方法的综合选择。它还提供了一组详细的说明,应遵循执行计算分析的混乱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

How disordered is my protein and what is its disorder for? A guide through the "dark side" of the protein universe.

How disordered is my protein and what is its disorder for? A guide through the "dark side" of the protein universe.

How disordered is my protein and what is its disorder for? A guide through the "dark side" of the protein universe.

How disordered is my protein and what is its disorder for? A guide through the "dark side" of the protein universe.

In the last 2 decades it has become increasingly evident that a large number of proteins are either fully or partially disordered. Intrinsically disordered proteins lack a stable 3D structure, are ubiquitous and fulfill essential biological functions. Their conformational heterogeneity is encoded in their amino acid sequences, thereby allowing intrinsically disordered proteins or regions to be recognized based on properties of these sequences. The identification of disordered regions facilitates the functional annotation of proteins and is instrumental for delineating boundaries of protein domains amenable to structural determination with X-ray crystallization. This article discusses a comprehensive selection of databases and methods currently employed to disseminate experimental and putative annotations of disorder, predict disorder and identify regions involved in induced folding. It also provides a set of detailed instructions that should be followed to perform computational analysis of disorder.

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