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首页> 外文期刊>Frontiers in Microbiology >DNA Delivery and Genomic Integration into Mammalian Target Cells through Type IV A and B Secretion Systems of Human Pathogens
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DNA Delivery and Genomic Integration into Mammalian Target Cells through Type IV A and B Secretion Systems of Human Pathogens

机译:通过人类病原体的IV A和B型分泌系统将DNA传递和基因组整合到哺乳动物靶细胞中

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We explore the potential of bacterial secretion systems as tools for genomic modification of human cells. We previously showed that foreign DNA can be introduced into human cells through the Type IV A secretion system of the human pathogen Bartonella henselae . Moreover, the DNA is delivered covalently attached to the conjugative relaxase TrwC, which promotes its integration into the recipient genome. In this work, we report that this tool can be adapted to other target cells by using different relaxases and secretion systems. The promiscuous relaxase MobA from plasmid RSF1010 can be used to deliver DNA into human cells with higher efficiency than TrwC. MobA also promotes DNA integration, albeit at lower rates than TrwC. Notably, we report that DNA transfer to human cells can also take place through the Type IV secretion system of two intracellular human pathogens, Legionella pneumophila and Coxiella burnetii , which code for a distantly related Dot/Icm Type IV B secretion system. This suggests that DNA transfer could be an intrinsic ability of this family of secretion systems, expanding the range of target human cells. Further analysis of the DNA transfer process showed that recruitment of MobA by Dot/Icm was dependent on the IcmSW chaperone, which may explain the higher DNA transfer rates obtained. Finally, we observed that the presence of MobA negatively affected the intracellular replication of C. burnetii , suggesting an interference with Dot/Icm translocation of virulence factors.
机译:我们探索细菌分泌系统作为人类细胞基因组修饰工具的潜力。我们先前曾证明,外源DNA可以通过人类病原体巴尔通体henselae的IV A型分泌系统引入人体细胞。此外,DNA被共价释放到共轭松弛酶TrwC上,从而促进其整合到受体基因组中。在这项工作中,我们报告说,通过使用不同的松弛酶和分泌系统,该工具可以适应其他靶细胞。来自质粒RSF1010的混杂松弛酶MobA可用于以比TrwC更高的效率将DNA递送到人细胞中。 MobA也促进DNA整合,尽管其速率低于TrwC。值得注意的是,我们报道了DNA转移到人类细胞的过程也可以通过两种细胞内人类病原体,嗜肺军团杆菌和Burnetii柯氏杆菌的IV型分泌系统来实现,这两个系统编码了远距离相关的Dot / Icm IV B型分泌系统。这表明DNA转移可能是该分泌系统家族的固有能力,从而扩大了靶标人类细胞的范围。 DNA转移过程的进一步分析表明,通过Dot / Icm募集MobA依赖于IcmSW分子伴侣,这可能解释了获得的更高DNA转移率。最后,我们观察到MobA的存在对伯氏梭菌的细胞内复制产生了负面影响,表明干扰了毒力因子的Dot / Icm易位。

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