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铜绿假单胞菌群体感应的早期激活揭示了一个复杂调控子的结构。

Early activation of quorum sensing in Pseudomonas aeruginosa reveals the architecture of a complex regulon.

作者信息

Schuster Martin, Greenberg E Peter

机构信息

Department of Microbiology, University of Washington, Box 357242, 1959 NE Pacific St, Seattle, WA 98195, USA.

出版信息

BMC Genomics. 2007 Aug 22;8:287. doi: 10.1186/1471-2164-8-287.

Abstract

BACKGROUND

Quorum-sensing regulation of gene expression in Pseudomonas aeruginosa is complex. Two interconnected acyl-homoserine lactone (acyl-HSL) signal-receptor pairs, 3-oxo-dodecanoyl-HSL-LasR and butanoyl-HSL-RhlR, regulate more than 300 genes. The induction of most of the genes is delayed during growth of P. aeruginosa in complex medium, cannot be advanced by addition of exogenous signal, and requires additional regulatory components. Many of these late genes can be induced by addition of signals early by using specific media conditions. While several factors super-regulate the quorum receptors, others may co-regulate target promoters or may affect expression posttranscriptionally.

RESULTS

To better understand the contributions of super-regulation and co-regulation to quorum-sensing gene expression, and to better understand the general structure of the quorum sensing network, we ectopically expressed the two receptors (in the presence of their cognate signals) and another component that affects quorum sensing, the stationary phase sigma factor RpoS, early in growth. We determined the effect on target gene expression by microarray and real-time PCR analysis. Our results show that many target genes (e.g. lasB and hcnABC) are directly responsive to receptor protein levels. Most genes (e.g. lasA, lecA, and phnAB), however, are not significantly affected, although at least some of these genes are directly regulated by quorum sensing. The majority of promoters advanced by RhlR appeared to be regulated directly, which allowed us to build a RhlR consensus sequence.

CONCLUSION

The direct responsiveness of many quorum sensing target genes to receptor protein levels early in growth confirms the role of super-regulation in quorum sensing gene expression. The observation that the induction of most target genes is not affected by signal or receptor protein levels indicates that either target promoters are co-regulated by other transcription factors, or that expression is controlled posttranscriptionally. This architecture permits the integration of multiple signaling pathways resulting in quorum responses that require a "quorum" but are otherwise highly adaptable and receptive to environmental conditions.

摘要

背景

铜绿假单胞菌中群体感应调控基因表达的过程较为复杂。两个相互关联的酰基高丝氨酸内酯(acyl-HSL)信号-受体对,即3-氧代十二烷酰-HSL-LasR和丁酰-HSL-RhlR,调控着300多个基因。在复杂培养基中铜绿假单胞菌生长期间,大多数基因的诱导会延迟,添加外源信号无法使其提前,且需要其他调控成分。通过使用特定的培养基条件,许多这些晚期基因可在早期通过添加信号来诱导。虽然有几个因子对群体感应受体起超级调控作用,但其他因子可能共同调控靶启动子,或可能在转录后影响表达。

结果

为了更好地理解超级调控和共同调控对群体感应基因表达的作用,以及更好地理解群体感应网络的总体结构,我们在生长早期异位表达了这两个受体(在其同源信号存在的情况下)以及另一个影响群体感应的成分,即稳定期σ因子RpoS。我们通过微阵列和实时PCR分析确定了对靶基因表达的影响。我们的结果表明,许多靶基因(如lasB和hcnABC)直接响应受体蛋白水平。然而,大多数基因(如lasA、lecA和phnAB)没有受到显著影响,尽管这些基因中至少有一些是由群体感应直接调控的。RhlR提前激活的大多数启动子似乎受到直接调控,这使我们能够构建一个RhlR共有序列。

结论

许多群体感应靶基因在生长早期对受体蛋白水平的直接响应证实了超级调控在群体感应基因表达中的作用。大多数靶基因的诱导不受信号或受体蛋白水平影响这一观察结果表明,要么靶启动子由其他转录因子共同调控,要么表达在转录后受到控制。这种结构允许整合多种信号通路,从而产生需要“群体数量”但在其他方面高度适应并能响应环境条件的群体感应反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a640/2018727/c168c857bc47/1471-2164-8-287-1.jpg

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