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Characterization of the GntR family regulator HpaR1 of the crucifer black rot pathogen Xanthomonas campestris pathovar campestris

机译:十字花科黑腐病病原体Xanthomonas campestris GantR pathovar campestris的GntR家族调节剂HpaR1的表征

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摘要

The GntR family transcription regulator HpaR1 identified from Xanthomonas campestris pv. campestris has been previously shown to positively regulate the genes responsible for hypersensitive reaction and pathogenicity and to autorepress its own expression. Here, we demonstrated that HpaR1 is a global regulator that positively regulates diverse biological processes, including xanthan polysaccharide production, extracellular enzyme activity, cell motility and tolerance to various stresses. To investigate the regulatory mechanisms of HpaR1, we began with xanthan polysaccharide production, which is governed by a cluster of gum genes. These are directed by the gumB promoter. Disruption of HpaR1 significantly reduced gumB transcription and an electrophoretic mobility shift assay demonstrated that HpaR1 interacts directly with gumB promoter. DNase I footprint analysis revealed that HpaR1 and RNA polymerase were bound to the sequences extending from −21 to +10 and −41 to +29 relative to the transcription initiation site of gumB, respectively. Furthermore, in vitro transcription assays showed that HpaR1 facilitated the binding of RNA polymerase to gumB promoter, leading to an enhancement of its transcription. These results suggest that HpaR1 regulates gumB transcription via a mechanism similar but different to what was found, until now, to only be used by some MerR family transcription activators.
机译:GntR家族转录调节剂HpaR1从Xanthomonas campestris pv中鉴定。先前已经显示过樟脑可正向调节负责过敏反应和致病性的基因并自动抑制其自身表达。在这里,我们证明了HpaR1是一种全球性调节剂,可以积极调节多种生物过程,包括黄原多糖的产生,细胞外酶的活性,细胞运动性以及对各种压力的耐受性。为了研究HpaR1的调控机制,我们从黄原多糖的生产开始,黄原聚糖的生产由一系列口香糖基因控制。这些由gumB启动子控制。 HpaR1的破坏显着降低了gumB转录,电泳迁移率变动分析表明HpaR1直接与gumB启动子相互作用。 DNase I足迹分析表明,相对于gumB的转录起始位点,HpaR1和RNA聚合酶分别与从-21延伸至+10和-41到+29的序列结合。此外,体外转录分析表明,HpaR1促进了RNA聚合酶与gumB启动子的结合,从而导致其转录增强。这些结果表明,HpaR1通过一种与迄今为止所发现的机制相似但不同的机制来调节gumB转录,这种机制直到现在才被某些MerR家族的转录激活因子所使用。

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