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首页> 外文期刊>Molecular Plant-Microbe Interactions >The HrpX/HrpY Two-Component System Activates hrpS Expression, the First Step in the Regulatory Cascade Controlling the Hrp Regulon in Pantoea stewartii subsp. stewartii
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The HrpX/HrpY Two-Component System Activates hrpS Expression, the First Step in the Regulatory Cascade Controlling the Hrp Regulon in Pantoea stewartii subsp. stewartii

机译:HRPX / HRPY双组件系统激活了HRPS表达,该调节级联控制Pantoea Stewartii子公司的HRP调节件的第一步。 Stewartii.

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摘要

A regulatory cascade activating hrp/hrc type III secretion and effector genes was delineated in Pantoea stewartii subsp. stewartii , a bacterial pathogen of corn. Four hrp regulatory genes were characterized: hrpX and hrpY encode the sensor kinase and response regulator, respectively, of a two-component signal transduction system; hrpS encodes an NtrC-like transcriptional enhancer; and hrpL encodes an alternative sigma factor. Epistasis analysis, expression studies using gene fusions, and genetic reconstruction of each step in Escherichia coli were used to delineate the following pathway: HrpY activates hrpS and also positively auto-regulates the hrpXY operon. In turn, HrpS is required for full activation of the σ54-dependent hrpL promoter. Finally, HrpL controls expression of all known hrp and wts genes. In vitro, hrpS and all downstream hrp genes were regulated by pH and salt concentration. Mutants with in-frame deletions in hrpX were still partially virulent on corn but were unable to sense the chemical or metabolic signals that induce hrp genes in vitro. Site-directed mutagenesis of HrpY indicated that aspartate 57 is the probable phosphorylation site and that it is needed for activity. These findings suggest that both HrpX and an alternate mechanism are involved in the activation of HrpY in planta.
机译:在Pantoea Stewartii Subsp中描绘了调节级联活化HRP / HRC分泌和效应基因。 Stewartii,玉米的细菌病原体。特征在于:HRPX和HRPE分别对传感器激酶和响应调节器分别进行双组分信号转导系统; HRP编码了类似NTRC的转录增强剂;并且HRPL编码替代的SIGMA因子。 Epissisis分析,使用基因融合的表达研究以及大肠杆菌中每个步骤的遗传重建用于描绘以下途径:HRPY激活HRP,并积极自动调节HRPXY操纵子。反过来,HRPS是全激活σ 54 -dependent HRPL启动子的。最后,HRPL控制所有已知的HRP和WTS基因的表达。体外,通过pH和盐浓度调节HRP和所有下游HRP基因。 HRPX中框内缺失的突变体在玉米上仍然是毒力,但不能感知诱导体外HRP基因的化学或代谢信号。 HRPE的点定向诱变表明,天冬氨酸57是可能的磷酸化位点,并且需要活动。这些发现表明HRPX和替代机制都涉及Planta中HRPY的激活。

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