首页> 外文期刊>BMC Veterinary Research >In silico identification of a multi-functional regulatory protein involved in Holliday junction resolution in bacteria
【24h】

In silico identification of a multi-functional regulatory protein involved in Holliday junction resolution in bacteria

机译:在计算机上鉴定参与细菌霍利迪连接解析的多功能调节蛋白

获取原文
           

摘要

BackgroundHomologous recombination is a fundamental cellular process that is most widely used by cells to rearrange genes and accurately repair DNA double-strand breaks. It may result in the formation of a critical intermediate named Holliday junction, which is a four-way DNA junction and needs to be resolved to allow chromosome segregation. Different Holliday junction resolution systems and enzymes have been characterized from all three domains of life. In bacteria, the RuvABC complex is the most important resolution system.ResultsIn this study, we conducted comparative genomics studies to identify a novel DNA-binding protein, YebC, which may serve as a key transcriptional regulator that mainly regulates the gene expression of RuvABC resolvasome in bacteria. On the other hand, the presence of YebC orthologs in some organisms lacking RuvC implied that it might participate in other biological processes. Further phylogenetic analysis of YebC protein sequences revealed two functionally different subtypes: YebC_I and YebC_II. Distribution of YebC_I is much wider than YebC_II. Only YebC_I proteins may play an important role in regulating RuvABC gene expression in bacteria. Investigation of YebC-like proteins in eukaryotes suggested that they may have originated from YebC_II proteins and evolved a new function as a specific translational activator in mitochondria. Finally, additional phylum-specific genes associated with Holliday junction resolution were predicted.ConclusionsOverall, our data provide new insights into the basic mechanism of Holliday junction resolution and homologous recombination in bacteria.
机译:背景同源重组是细胞最基本的过程,被细胞广泛用于重新排列基因并准确修复DNA双链断裂。它可能导致形成名为Holliday结的关键中间物,该中间物是四向DNA结,需要解析以允许染色体分离。已从生活的所有三个方面表征了不同的霍利迪交界处分辨系统和酶。在细菌中,RuvABC复合物是最重要的分离系统。结果在本研究中,我们进行了比较基因组学研究,以鉴定一种新型的DNA结合蛋白YebC,它可能是主要调控RuvABC resolvasome基因表达的关键转录调节因子。在细菌中。另一方面,在缺乏RuvC的某些生物中,YebC直系同源物的存在暗示它可能参与其他生物过程。 YebC蛋白序列的进一步系统发育分析揭示了两个功能不同的亚型:YebC_I和YebC_II。 YebC_I的分布比YebC_II广泛得多。只有YebC_I蛋白可能在调节细菌中RuvABC基因表达中起重要作用。对真核生物中类似YebC的蛋白质的研究表明,它们可能起源于YebC_II蛋白质,并发展了作为线粒体中特定翻译激活因子的新功能。最后,预测了与霍利迪连接分辨相关的其他门特异性基因。结论总的来说,我们的数据为霍利迪连接分辨和细菌中同源重组的基本机制提供了新见解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号