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A new Pseudomonas quinolone signal (PQS) binding partner: MexG

机译:新的假单胞菌喹诺酮信号(PQS)结合伴侣:MexG

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摘要

The opportunistic pathogen Pseudomonas aeruginosa utilises the cell–cell signalling mechanism known as quorum sensing to regulate virulence. P. aeruginosa produces two quinolone-based quorum sensing signalling molecules; the Pseudomonas quinolone signal (PQS) and its biosynthetic precursor 2-heptyl-4(1H)-quinolone (HHQ). To date, only one receptor (the PqsR protein) has been identified that is capable of binding PQS and HHQ. Here, we report on the synthesis of PQS and HHQ affinity probes for chemical proteomic studies. The PQS affinity probe very effectively captured PqsR in vitro. In addition, we also identified an interaction between PQS and the “orphan” RND efflux pump protein, MexG. The PQS–MexG interaction was further confirmed by purifying MexG and characterizing its ability to bind PQS and HHQ in vitro. Our findings suggest that PQS may have multiple binding partners in the cell and provide important new tools for studying quinolone signalling in P. aeruginosa and other organisms.
机译:机会病原性铜绿假单胞菌利用称为法定感应的细胞间信号传导机制来调节毒力。铜绿假单胞菌产生两个基于喹诺酮的群体感应信号分子。假单胞菌喹诺酮信号(PQS)及其生物合成前体2-庚基-4(1H)-喹诺酮(HHQ)。迄今为止,仅鉴定出一种能够结合PQS和HHQ的受体(PqsR蛋白)。在这里,我们报告用于化学蛋白质组学研究的PQS和HHQ亲和探针的合成。 PQS亲和力探针非常有效地在体外捕获了PqsR。此外,我们还确定了PQS与“孤立” RND外排泵蛋白MexG之间的相互作用。通过纯化MexG并表征其在体外结合PQS和HHQ的能力,进一步证实了PQS–MexG的相互作用。我们的发现表明,PQS在细胞中可能具有多个结合伴侣,并为研究铜绿假单胞菌和其他生物中的喹诺酮信号提供重要的新工具。

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