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6108 种病毒蛋白质组的综合固有无序分析:从固有无序贯穿程度到无序病毒蛋白质的功能注释。

Comprehensive Intrinsic Disorder Analysis of 6108 Viral Proteomes: From the Extent of Intrinsic Disorder Penetrance to Functional Annotation of Disordered Viral Proteins.

机构信息

Diagnostics & Vaccines Group, ICAR-National Institute of High Security Animal Diseases, Bhopal 462022, India.

Laboratory for Structural Bioinformatics, Center for Biosystems Dynamics Research, RIKEN, 1-7-22 Suehiro, Yokohama, Kanagawa 230-0045, Japan.

出版信息

J Proteome Res. 2021 May 7;20(5):2704-2713. doi: 10.1021/acs.jproteome.1c00011. Epub 2021 Mar 10.

Abstract

Much of our understanding of proteins and proteomes comes from the traditional protein structure-function paradigm. However, in the last 2 decades, both computational and experimental studies have provided evidence that a large fraction of functional proteomes across different domains of life consists of intrinsically disordered proteins, thus triggering a quest to unravel and decipher protein intrinsic disorder. Unlike structured/ordered proteins, intrinsically disordered proteins/regions (IDPs/IDRs) do not possess a well-defined structure under physiological conditions and exist as highly dynamic conformational ensembles. In spite of this peculiarity, these proteins have crucial roles in cell signaling and regulation. To date, studies on the abundance and function of IDPs/IDRs in viruses are rather limited. To fill this gap, we carried out an extensive and thorough bioinformatics analysis of 283 000 proteins from 6108 reference viral proteomes. We analyzed protein intrinsic disorder from multiple perspectives, such as abundance of IDPs/IDRs across diverse virus types, their functional annotations, and subcellular localization in taxonomically divergent hosts. We show that the content of IDPs/IDRs in viral proteomes varies broadly as a function of virus genome types and taxonomically divergent hosts. We have combined the two most commonly used and accurate IDP predictors' results with charge-hydropathy (CH) versus cumulative distribution function (CDF) plots to categorize the viral proteins according to their IDR content and physicochemical properties. Mapping of gene ontology on the disorder content of viral proteins reveals that IDPs are primarily involved in key virus-host interactions and host antiviral immune response downregulation, which are reinforced by the post-translational modifications tied to disorder-enriched viral proteins. The present study offers detailed insights into the prevalence of the intrinsic disorder in viral proteomes and provides appealing targets for the design of novel therapeutics.

摘要

我们对蛋白质和蛋白质组的认识在很大程度上来自于传统的蛋白质结构-功能范式。然而,在过去的 20 年里,计算和实验研究都提供了证据,表明生命不同领域的功能蛋白质组的很大一部分由固有无序蛋白质组成,从而引发了对解开和破译蛋白质固有无序的探索。与结构/有序蛋白质不同,固有无序蛋白质/区域(IDPs/IDRs)在生理条件下没有明确的结构,而是存在高度动态的构象集合。尽管有这种特殊性,这些蛋白质在细胞信号转导和调节中起着至关重要的作用。迄今为止,关于病毒中 IDPs/IDRs 的丰度和功能的研究相当有限。为了填补这一空白,我们对来自 6108 个参考病毒蛋白质组的 283000 个蛋白质进行了广泛而彻底的生物信息学分析。我们从多个角度分析蛋白质的固有无序性,例如不同病毒类型的 IDPs/IDRs 的丰度、它们的功能注释以及在分类学上不同的宿主中的亚细胞定位。我们表明,病毒蛋白质组中 IDPs/IDRs 的含量随病毒基因组类型和分类学上不同的宿主而广泛变化。我们将两种最常用和最准确的 IDP 预测器的结果与电荷-疏水性(CH)与累积分布函数(CDF)图相结合,根据 IDR 含量和物理化学性质对病毒蛋白进行分类。对病毒蛋白无序含量进行基因本体论映射揭示,IDPs 主要参与关键的病毒-宿主相互作用和宿主抗病毒免疫反应的下调,这一作用得到与无序富集的病毒蛋白相关的翻译后修饰的支持。本研究详细了解了病毒蛋白质组中固有无序的普遍性,并为设计新型治疗方法提供了有吸引力的目标。

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