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Quorum sensing differentially regulates Pseudomonas aeruginosa type VI secretion locus I and homologous loci II and III, which are required for pathogenesis

机译:Quorum感测差异地调节假单胞菌铜绿假单胞菌型VI分泌物基因座I和同源锁上II和III,这是发病机制所必需的

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Pseudomonas aeruginosa harbours three type VI secretion (T6S) loci. Although HSI-I has been partially studied, limited knowledge is available on the homologous loci HSI-II and HSI-III. We show that quorum sensing (QS) differentially regulates the expression of genes at all three loci. HSI-I-associated gene expression is suppressed by both the homoserine lactone transcription factor LasR and the 4-hydroxy-2-alkylquinoline (HAQ) transcriptional regulator MvfR. Conversely, both HSI-II and HSI-III loci are positively controlled by LasR and MvfR. PqsE, a key component of the MvfR regulon, is required for the expression of part of HSI-III but not HSI-II, and previously identified inhibitors of HAQ biosynthesis significantly downregulate HSI-II and -III gene expression. Animal and plant infection studies reveal that both HSI-II and -III play important roles in pathogenesis. Furthermore, analysis of a double ΔHSI-II?:?:?III mutant suggests that these loci functionally compensate for one another in virulence. This study illustrates the contribution of the QS systems to T6S gene regulation and reveals the importance of HSI-II and -III in mediating P. aeruginosa pathogenesis. Moreover, this work provides new insights into the design and development of selective compounds that may restrict human P. aeruginosa and possibly other clinical infections.
机译:Pseudomonas铜绿假单胞菌Harbors三型VI分泌(T6S)基因座。虽然HSI-I已被部分研究,但在同源基因座HSI-II和HSI-III上有有限的知识。我们表明法定感测(QS)差异地调节所有三个基因座的基因的表达。 HSI-I相关基因表达由均静脉内酯转录因子LASr和4-羟基-2-烷基喹啉(HAQ)转录调节剂MVFR抑制。相反,HSI-II和HSI-III基因座由LASR和MVFR积极控制。 PQSE是MVFR调节件的关键组分,是HSI-III的一部分而不是HSI-II的表达所必需的,并且先前鉴定了HAQ生物合成的抑制剂显着下调HSI-II和-III基因表达。动物和植物感染研究表明,HSI-II和-III都在发病机制中发挥重要作用。此外,分析双ΔHSI-II?:?:?III突变体表明这些基因座在毒力中彼此互相补偿。该研究说明了QS系统对T6S基因调控的贡献,并揭示了HSI-II和-III在介导的P.铜绿假单胞菌发病机制中的重要性。此外,这项工作提供了新的见解,进入设计和开发的选择性化合物,这些化合物可能限制人体P.铜绿假单胞菌和可能其他临床感染。

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