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Emergence and Evolutionary Analysis of the Human DDR Network: Implications in Comparative Genomics and Downstream Analyses

机译:人类DDR网络的出现和进化分析:对比较基因组学和下游分析的启示

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摘要

The DNA damage response (DDR) is a crucial signaling network that preserves the integrity of the genome. This network is an ensemble of distinct but often overlapping subnetworks, where different components fulfill distinct functions in precise spatial and temporal scenarios. To understand how these elements have been assembled together in humans, we performed comparative genomic analyses in 47 selected species to trace back their emergence using systematic phylogenetic analyses and estimated gene ages. The emergence of the contribution of posttranslational modifications to the complex regulation of DDR was also investigated. This is the first time a systematic analysis has focused on the evolution of DDR subnetworks as a whole. Our results indicate that a DDR core, mostly constructed around metabolic activities, appeared soon after the emergence of eukaryotes, and that additional regulatory capacities appeared later through complex evolutionary process. Potential key posttranslational modifications were also in place then, with interacting pairs preferentially appearing at the same evolutionary time, although modifications often led to the subsequent acquisition of new targets afterwards. We also found extensive gene loss in essential modules of the regulatory network in fungi, plants, and arthropods, important for their validation as model organisms for DDR studies.
机译:DNA损伤反应(DDR)是一个至关重要的信号网络,可保持基因组的完整性。该网络是不同但经常重叠的子网的集合,其中不同的组件在精确的空间和时间场景中履行不同的功能。为了了解这些元素如何在人类中组装在一起,我们使用系统的系统发育分析和估计的基因年龄,对47个选定物种进行了比较基因组分析,以追溯它们的出现。还研究了翻译后修饰对DDR复杂调控的贡献的出现。这是第一次系统分析侧重于整个DDR子网的发展。我们的结果表明,真核生物出现后不久就出现了主要围绕代谢活动构建的DDR核,后来通过复杂的进化过程出现了更多的调节能力。潜在的关键翻译后修饰也已到位,相互作用对优先出现在同一进化时间,尽管修饰通常导致随后获得新的靶标。我们还在真菌,植物和节肢动物的调控网络的基本模块中发现了广泛的基因缺失,这对于将其作为DDR研究的模型生物进行验证非常重要。

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