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From deep-sea volcanoes to human pathogens: a conserved quorum-sensing signal in Epsilonproteobacteria

机译:从深海火山到人类病原体:Epsilon变形细菌中保守的群体感应信号

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摘要

Chemosynthetic Epsilonproteobacteria from deep-sea hydrothermal vents colonize substrates exposed to steep thermal and redox gradients. In many bacteria, substrate attachment, biofilm formation, expression of virulence genes and host colonization are partly controlled via a cell density-dependent mechanism involving signal molecules, known as quorum sensing. Within the Epsilonproteobacteria, quorum sensing has been investigated only in human pathogens that use the luxS/autoinducer-2 (AI-2) mechanism to control the expression of some of these functions. In this study we showed that luxS is conserved in Epsilonproteobacteria and that pathogenic and mesophilic members of this class inherited this gene from a thermophilic ancestor. Furthermore, we provide evidence that the luxS gene is expressed—and a quorum-sensing signal is produced—during growth of Sulfurovum lithotrophicum and Caminibacter mediatlanticus, two Epsilonproteobacteria from deep-sea hydrothermal vents. Finally, we detected luxS transcripts in Epsilonproteobacteria-dominated biofilm communities collected from deep-sea hydrothermal vents. Taken together, our findings indicate that the epsiloproteobacterial lineage of the LuxS enzyme originated in high-temperature geothermal environments and that, in vent Epsilonproteobacteria, luxS expression is linked to the production of AI-2 signals, which are likely produced in situ at deep-sea vents. We conclude that the luxS gene is part of the ancestral epsilonproteobacterial genome and represents an evolutionary link that connects thermophiles to human pathogens.
机译:来自深海热液喷口的化学合成的厄普隆变形杆菌细菌定居在暴露于陡峭的热梯度和氧化还原梯度的底物上。在许多细菌中,底物附着,生物膜形成,毒力基因的表达和宿主定植是通过涉及信号分子的细胞密度依赖性机制(称为群体感应)部分控制的。在Epsilon变形细菌中,仅在使用luxS / autoinducer-2(AI-2)机制控制其中某些功能表达的人类病原体中研究了群体感应。在这项研究中,我们表明luxS在Epsilon变形杆菌中是保守的,该类的致病和嗜温成员从嗜热祖先那里继承了该基因。此外,我们提供的证据表明,在深海热液喷口中的两种Epsilon变形细菌Sulfurovum lithotrophicum和Caminibacter mediatlanticus的生长过程中,luxS基因被表达并产生了群体感应信号。最后,我们在从深海热液喷口收集的以Epsilon变形杆菌为主的生物膜群落中检测到luxS转录物。综上所述,我们的发现表明,LuxS酶的菌丝蛋白谱系起源于高温地热环境,并且在通风的Epsilon变形杆菌中,luxS的表达与AI-2信号的产生有关,而AI-2信号很可能在深层原位产生。海上通风口。我们得出的结论是luxS基因是祖先epsilonproteobacterial基因组的一部分,代表了将嗜热菌与人类病原体连接起来的进化联系。

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