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基于蛋白质结构域视角的病毒圈与宿主的关系。

A protein domain-based view of the virosphere-host relationship.

作者信息

Abroi Aare

机构信息

Estonian Biocentre, Riia 23, Tartu, 51010, Estonia.

出版信息

Biochimie. 2015 Dec;119:231-43. doi: 10.1016/j.biochi.2015.08.008. Epub 2015 Aug 19.

DOI:10.1016/j.biochi.2015.08.008
PMID:26296474
Abstract

Despite being an important and inseparable part of the biosphere, viruses are too often overlooked in several life sciences, including evolutionary biology, systems biology, and non-marine ecology. In this review, a protein domain-based view of viral proteomes, the proteomes of other organisms and the overlap between them is presented. The data show that in many viral species, viral proteins are not very well annotated with protein domains. Compared with viral proteomes, cellular proteomes are covered quite uniformly with respect to protein domains and show higher coverage. A tremendous number of virally coded domains exist; in fact, the number of protein domains in the characterised virosphere is approaching that found in Archaea, a well-accepted superkingdom. Proteins encoded by viruses contain virosphere-specific domains (i.e., not found in cellular proteomes) and/or many domains shared by viral and cellular proteomes. Virosphere-specific domains are structurally peculiar with respect to different structural measures, making them a clear source of structural and functional novelty. Viral families with RNA genomes tend to harbour more virosphere-specific domains than other viruses. Interestingly, host range preferences of different viral classes are, for the most part, not reflected by domains shared between viruses and different superkingdoms. The role of viruses in the genesis of the cellular domain repertoire is reviewed to bring them more confidently and firmly into the larger biological picture.

摘要

尽管病毒是生物圈重要且不可分割的一部分,但在包括进化生物学、系统生物学和非海洋生态学在内的多个生命科学领域,病毒却常常被忽视。在这篇综述中,我们从基于蛋白质结构域的视角,展示了病毒蛋白质组、其他生物体的蛋白质组以及它们之间的重叠情况。数据表明,在许多病毒物种中,病毒蛋白的蛋白质结构域注释并不完善。与病毒蛋白质组相比,细胞蛋白质组在蛋白质结构域方面的覆盖更为均匀,且覆盖率更高。存在大量由病毒编码的结构域;事实上,已表征的病毒圈中的蛋白质结构域数量正在接近古菌(一个被广泛认可的超界)中的数量。病毒编码的蛋白质包含病毒圈特有的结构域(即在细胞蛋白质组中未发现的结构域)和/或许多病毒与细胞蛋白质组共有的结构域。病毒圈特有的结构域在不同结构指标方面具有独特的结构,使其成为结构和功能新颖性的明确来源。与其他病毒相比,具有RNA基因组的病毒科往往含有更多病毒圈特有的结构域。有趣的是,不同病毒类别的宿主范围偏好大多并未通过病毒与不同超界之间共有的结构域体现出来。本文回顾了病毒在细胞结构域库起源中的作用,以便更自信、更坚定地将它们纳入更宏观的生物学图景中。

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A protein domain-based view of the virosphere-host relationship.基于蛋白质结构域视角的病毒圈与宿主的关系。
Biochimie. 2015 Dec;119:231-43. doi: 10.1016/j.biochi.2015.08.008. Epub 2015 Aug 19.
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Annotation of Protein Domains Reveals Remarkable Conservation in the Functional Make up of Proteomes Across Superkingdoms.注释蛋白质结构域揭示了超界中蛋白质组在功能组成上的显著保守性。
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Viral proteins acquired from a host converge to simplified domain architectures.病毒从宿主获得的蛋白质趋于简化的结构域架构。
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Did Viruses Evolve As a Distinct Supergroup from Common Ancestors of Cells?病毒是从细胞的共同祖先进化而来的一个独特超群吗?
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