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首页> 外文期刊>DNA research: an international journal for rapid publication of reports on genes and genomes >Activation of sigma(20) -dependent recombination and horizontal gene transfer in Mycoplasma genitalium
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Activation of sigma(20) -dependent recombination and horizontal gene transfer in Mycoplasma genitalium

机译:σ(20)依赖性重组和水平基因转移在支原体中的激活

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摘要

In the human pathogen Mycoplasma genitalium, homologous recombination is under the control of sigma(20), an alternative sigma factor that boosts the generation of genetic and antigenic diversity in the population. Under laboratory growth conditions, sigma(20) activation is rare and the factors governing its intermittent activity are unknown. Two sigma(20)-regulated genes, rrlA and rrlB, showed to be important for recombination of homologous DNA sequences in this bacterium. Herein, we demonstrate that rrlA and rrlB code for two small proteins that participate in a feed-forward loop essential for sigma(20) function. In addition, we identify novel genes regulated by sigma(20) and show that several non-coding regions, which function as a reservoir for the generation of antigenic diversity, are also activated by this alternative sigma factor. Finally, we reveal that M. genitalium cells can transfer DNA horizontally by a novel mechanism that requires RecA and is facilitated by sigma(20) overexpression. This DNA transfer system is arguably fundamental for persistence of M. genitalium within the host since it could facilitate a rapid dissemination of successful antigenic variants within the population. Overall, these findings impose a novel conception of genome evolution, genetic variation and survival of M. genitalium within the host.
机译:在人病原体支原体转体会中,同源重组是在Sigma(20)的控制下,一种替代的Sigma因子,可以提高人口中遗传和抗原多样性的产生。在实验室生长条件下,Sigma(20)激活是罕见的,有关其间歇性活动的因素是未知的。两种Sigma(20)-Regulated基因,RRLA和RRLB显示出对该细菌中同源DNA序列的重组是重要的。在此,我们证明了参与Sigma(20)功能的前馈环的两个小蛋白的RRLA和RRLB代​​码。此外,我们识别由Sigma(20)调节的新型基因,并表明几种非编码区,其用作产生抗原多样性的储层,也是通过这种替代的Sigma因子激活的。最后,我们揭示了M.生殖器细胞可以通过需要RECA的新机制水平转移DNA,并且通过Sigma(20)过表达促进。该DNA转移系统可易于持续宿主持续性的基础,因为它可以促进群体内的成功抗原变异的快速传播。总体而言,这些研究结果施加了对宿主内部基因组进化,遗传变异和生存的新颖概念。

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