Chatterjee Asita, Cui Yaya, Chatterjee Arun K
Department of Plant Microbiology and Pathology, University of Missouri at Columbia, 65211, USA.
Mol Plant Microbe Interact. 2002 Sep;15(9):971-80. doi: 10.1094/MPMI.2002.15.9.971.
In Erwinia carotovora subsp. carotovora (Ecc) strain 71 (Ecc71), HrpL(Ecc), an alternate sigma factor of the extracytoplasmic function subfamily, plays a central role in the expression of the hrp (hypersensitive reaction and pathogenicity) regulon. We document here that sigma-54 (RpoN) is required for full expression of hrpL(Ecc) and that HrpS, in conjunction with sigma-54, activates hrpL(Ecc) transcription. We also made the novel observation that integration host factor is required for the activation of the hrpL(Ecc) promoter. Our findings reveal that the RsmA/rsmB RNA-mediated post-transcriptional system, known to control extracellular enzyme and harpin production, affects hrpL(Ecc) expression as well. For example, hrpL(Ecc) RNA levels are barely detected in an RsmB- strain. Conversely, hrpL(Ecc) mRNA levels are much higher in RsmA- bacteria than in the RsmA+ parent. This effect is due to RsmA-promoted decay of hrpL(Ecc) RNA. Moreover, the following regulators known to control the production of either RsmA, rsmB RNA, or both also affect hrpL(Ecc) expression: GacA (response regulator of a two-component system), KdgR (an IcII type repressor), HexA (a LysR type repressor), RsmC (a putative transcriptional adapter). Based upon the data now available for Ecc and extrapolating from the evidence in other systems, we propose a tentative model that depicts the Hrp regulatory system of Ecc and explains the basis for coregulation of extracellular enzyme production and expression of the Hrp regulon.
在胡萝卜软腐欧文氏菌胡萝卜软腐亚种(Ecc)菌株71(Ecc71)中,细胞质外功能亚家族的替代σ因子HrpL(Ecc)在hrp(过敏反应和致病性)调控子的表达中起核心作用。我们在此证明,σ-54(RpoN)是hrpL(Ecc)充分表达所必需的,并且HrpS与σ-54共同激活hrpL(Ecc)转录。我们还得到了一个新的发现,即整合宿主因子是激活hrpL(Ecc)启动子所必需的。我们的研究结果表明,已知控制细胞外酶和harpin产生的RsmA/rsmB RNA介导的转录后系统也影响hrpL(Ecc)的表达。例如,在RsmB缺失菌株中几乎检测不到hrpL(Ecc)RNA水平。相反,RsmA缺失细菌中的hrpL(Ecc)mRNA水平比RsmA阳性亲本中的高得多。这种效应是由于RsmA促进了hrpL(Ecc)RNA的降解。此外,以下已知控制RsmA、rsmB RNA或两者产生的调节因子也影响hrpL(Ecc)的表达:GacA(双组分系统的应答调节因子)、KdgR(IcII型阻遏物)、HexA(LysR型阻遏物)、RsmC(一种假定的转录衔接子)。基于目前可获得的Ecc数据并从其他系统的证据进行推断,我们提出了一个初步模型,该模型描绘了Ecc的Hrp调节系统,并解释了细胞外酶产生与Hrp调控子表达共同调节的基础。