Minogue Timothy D, Carlier Aurelien L, Koutsoudis Maria D, von Bodman Susanne B
Department of Plant Science, University of Connecticut, Storrs, CT 06269, USA.
Mol Microbiol. 2005 Apr;56(1):189-203. doi: 10.1111/j.1365-2958.2004.04529.x.
The LuxR-type quorum-sensing transcription factor EsaR functions as a repressor of exopolysaccharide (EPS) synthesis in the phytopathogenic bacterium Pantoea stewartii ssp. stewartii. The cell density-dependent expression of EPS is critical for Stewart's wilt disease development. Strains deficient in the synthesis of a diffusible acyl-homoserine lactone inducer remain repressed for EPS synthesis and are consequently avirulent. In contrast, disruption of the esaR gene leads to hypermucoidy and attenuated disease development. Ligand-free EsaR functions as a negative autoregulator of the esaR gene and responds to exogenous acyl-homoserine lactone for derepression. The focus of this study was to define the mechanism by which EsaR governs the expression of the cps locus, which encodes functions required for stewartan EPS synthesis and membrane translocation. Genetic and biochemical studies show that EsaR directly represses the transcription of the rcsA gene. RcsA encodes an essential coactivator for RcsA/RcsB-mediated transcriptional activation of cps genes. In vitro assays identify an EsaR DNA binding site within the rcsA promoter that is reasonably well conserved with the previously described esaR box. We also describe that RcsA positively controls its own expression. Interestingly, promoter proximal genes within the cps cluster are significantly more acyl-homoserine lactone responsive than genes located towards the middle or 3' end of the gene cluster. We will discuss a possible role of EsaR-mediated quorum sensing in the differential expression of the cps operon.
LuxR 型群体感应转录因子 EsaR 在植物致病细菌斯氏泛菌斯氏亚种中作为胞外多糖(EPS)合成的阻遏物发挥作用。EPS 的细胞密度依赖性表达对斯图尔特枯萎病的发展至关重要。缺乏可扩散的酰基高丝氨酸内酯诱导物合成的菌株,其 EPS 合成仍受到抑制,因此无毒。相反,esaR 基因的破坏导致高黏液性和疾病发展减弱。无配体的 EsaR 作为 esaR 基因的负自调控因子发挥作用,并对外源酰基高丝氨酸内酯作出反应以解除抑制。本研究的重点是确定 EsaR 调控 cps 基因座表达的机制,该基因座编码斯图尔特 EPS 合成和膜转运所需的功能。遗传和生化研究表明,EsaR 直接抑制 rcsA 基因的转录。RcsA 编码一种必需的共激活因子,用于 RcsA/RcsB 介导的 cps 基因转录激活。体外试验确定了 rcsA 启动子内的一个 EsaR DNA 结合位点,该位点与先前描述的 esaR 框相当保守。我们还描述了 RcsA 正向调控其自身的表达。有趣的是,cps 基因簇内启动子近端的基因比位于基因簇中部或 3' 端的基因对酰基高丝氨酸内酯的反应性明显更高。我们将讨论 EsaR 介导的群体感应在 cps 操纵子差异表达中的可能作用。