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The logic of DNA replication in double-stranded DNA viruses: insights from global analysis of viral genomes

机译:双链DNA病毒中DNA复制的逻辑:病毒基因组全局分析的见解

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Genomic DNA replication is a complex process that involves multiple proteins. Cellular DNA replication systems are broadly classified into only two types, bacterial and archaeo-eukaryotic. In contrast, double-stranded (ds) DNA viruses feature a much broader diversity of DNA replication machineries. Viruses differ greatly in both completeness and composition of their sets of DNA replication proteins. In this study, we explored whether there are common patterns underlying this extreme diversity. We identified and analyzed all major functional groups of DNA replication proteins in all available proteomes of dsDNA viruses. Our results show that some proteins are common to viruses infecting all domains of life and likely represent components of the ancestral core set. These include B-family polymerases, SF3 helicases, archaeo-eukaryotic primases, clamps and clamp loaders of the archaeo-eukaryotic type, RNase H and ATP-dependent DNA ligases. We also discovered a clear correlation between genome size and self-sufficiency of viral DNA replication, the unanticipated dominance of replicative helicases and pervasive functional associations among certain groups of DNA replication proteins. Altogether, our results provide a comprehensive view on the diversity and evolution of replication systems in the DNA virome and uncover fundamental principles underlying the orchestration of viral DNA replication.
机译:基因组DNA复制是一个复杂的过程,涉及多种蛋白质。细胞DNA复制系统大致可分为细菌和古生真核两种类型。相比之下,双链(ds)DNA病毒具有更广泛的DNA复制机制多样性。病毒在其DNA复制蛋白集合的完整性和组成方面都存在很大差异。在这项研究中,我们探讨了这种极端多样性背后是否存在共同的模式。我们在dsDNA病毒的所有可用蛋白质组中鉴定并分析了DNA复制蛋白的所有主要功能组。我们的结果表明,某些蛋白质是感染生命所有领域的病毒所共有的蛋白质,很可能代表了祖先核心集的组成部分。这些包括B族聚合酶,SF3解旋酶,古生物-真核生物引发酶,古生物-真核生物类型的钳位和钳位加载子,RNase H和ATP依赖的DNA连接酶。我们还发现了基因组大小与病毒DNA复制的自给自足,复制解旋酶的意想不到的优势以及某些DNA复制蛋白组之间普遍存在的功能关联之间的明确关联。总而言之,我们的结果为DNA病毒中复制系统的多样性和进化提供了一个全面的视角,并揭示了病毒DNA复制编排的基本原理。

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