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Mutation analysis of the Pseudomonas aeruginosa mvfR and pqsABCDE gene promoters demonstrates complex quorum-sensing circuitry

机译:铜绿假单胞菌MVFR和PQSABCDE基因启动子的突变分析证明了复杂的批量传感电路

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The LysR-type transcriptional regulator MvfR (PqsR) (multiple virulence factor regulator) plays a critical role in Pseudomonas aeruginosa pathogenicity via the transcriptional regulation of multiple quorum-sensing (QS)-regulated virulence factors. LasR activates full mvfR transcription, and MvfR subsequently activates pqsA–E expression. This study identifies and characterizes the key cis-regulatory elements through which mvfR and pqsA–E transcription is regulated in the highly virulent P. aeruginosa strain PA14. Deletion and site-directed mutagenesis indicate that: (1) LasR activates mvfR transcription by binding to a las/rhl box, CTAACAAAAGACATAG, centred at ?513?bp upstream of the MvfR translational start site; and (2) RhlR represses pqsA transcription by binding to a las/rhl box, CTGTGAGATTTGGGAG, centred at ?311?bp upstream of the pqsA transcriptional initiation site. Furthermore, it is shown that MvfR activates pqsA–E transcription by binding to a LysR box, TTCGGACTCCGAA, centred at ?45?bp relative to the pqsA transcriptional initiation site, demonstrating that this LysR box has a critical role in the physical interaction between the MvfR protein and the pqsA promoter. These results provide new insights into the regulatory relationships between LasR and mvfR, and between MvfR/RhlR and the pqs operon, and elucidate further the complex regulation of the P. aeruginosa QS circuitry.
机译:Lysr型转录调节剂MVFR(PQSR)(多种毒力因子调节剂)通过多重仲裁(QS)的转录调节在PSeudomonas铜绿假单胞菌致病性中起重要作用。 LASR激活全MVFR转录,MVFR随后激活PQSA-E表达式。该研究鉴定并表征了通过其中MVFR和PQSA-E转录的关键顺应性调节元件在高毒性的P.铜绿假单胞菌菌株PA14中调节。删除和站点定向诱变表明:(1)LASR通过绑定到LAS / RHL框,CTAACAAAAGACATAG,以α513为中心,激活MVFR转录; (2)RHLR通过与LAS / RHL框,CTGTGAGATTTGGGAG结合,以pQSA转录起始位点的上游置于α311Ωbp,通过结合LAS / RHL盒来抑制PQSA转录。此外,显示MVFR通过与PQSA转录起始位点为中心的Lysr盒,TTCGGACCGAA的结合而激活PQSA-E转录,表明该Lysr盒在物理相互作用中具有关键作用MVFR蛋白和PQSA启动子。这些结果对LASR和MVFR之间的调节关系以及MVFR / RHLR和PQS操纵子之间的调控关系提供了新的见解,并进一步阐明了P.铜绿假单胞菌QS电路的复杂调节。

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