首页> 外文期刊>Journal of bacteriology >Functional Analysis and Regulation of the Divergent spuABCDEFGH-spuI Operons for Polyamine Uptake and Utilization in Pseudomonas aeruginosa PAO1
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Functional Analysis and Regulation of the Divergent spuABCDEFGH-spuI Operons for Polyamine Uptake and Utilization in Pseudomonas aeruginosa PAO1

机译:铜绿假单胞菌PAO1中不同spuABCDEFGH-spuI操纵子对多胺吸收和利用的功能分析和调控

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A multiple-gene locus for polyamine uptake and utilization was discovered in Pseudomonas aeruginosa PAO1. This locus contained nine genes designated spuABCDEFGHI (spu for spermidine and putrescine utilization). The physiological functions of the spu genes in utilization of two polyamines (putrescine and spermidine) were analyzed by using Tn5 transposon-mediated spu knockout mutants. Growth and uptake experiments support that the spuDEFGH genes specify components of a major ABC-type transport system for spermidine uptake, and enzymatic measurements indicated that spuC encodes putrescine aminotransferase with pyruvate as the amino group receptor. Although spuA and spuB mutants showed an apparent defect in spermidine utilization, the biochemical functions of the gene products have yet to be elucidated. Assays of lacZ fusions demonstrated the presence of agmatine-, putrescine-, and spermidine-inducible promoters for the spuABCDEFGH operon and the divergently transcribed spuI gene of unknown function. Since the observed induction effect of agmatine was abolished in an aguA mutant where conversion of agmatine into putrescine was blocked, putrescine or spermidine, but not agmatine, serves as the inducer molecule of the spuA-spuI divergent promoters. S1 nuclease mappings confirmed further the induction effects of the polyamines on transcription of the divergent promoters and localized the transcription initiation sites. Gel retardation assays with extracts from the cells grown on putrescine or spermidine demonstrated the presence of a polyamine-responsive regulatory protein interacting with the divergent promoter region. Finally, the absence of the putrescine-inducible spuA expression and putrescine aminotransferase (spuC) formation in the cbrB mutant indicated that the spu operons are regulated by the global CbrAB two-component system perhaps via the putative polyamine-responsive transcriptional activator.
机译:在铜绿假单胞菌PAO1中发现了多基因吸收和利用的多基因位点。该基因座包含9个基因,称为 spuABCDEFGHI (亚精胺和腐胺利用的 spu )。利用Tn 5 转座子介导的 spu 敲除突变体分析了 spu 基因在两种聚胺(鸟氨酸和亚精胺)利用中的生理功能。生长和摄取实验支持 spuDEFGH 基因指定了主要的ABC型亚精胺摄取转运系统的组成,酶促测定表明 spuC 编码丙酮酸为腐胺的腐胺氨基转移酶。氨基受体。尽管 spuA spuB 突变体在亚精胺利用方面显示出明显的缺陷,但基因产物的生化功能尚未阐明。对 lacZ 融合蛋白的分析表明,存在 spuABCDEFGH 操纵子的胍丁胺,腐胺和亚精胺诱导型启动子以及转录多样的 spuI 基因功能未知。由于观察到的胍丁胺诱导作用在 aguA 突变体中被取消,突变体中的胍丁胺转化为腐胺被阻断,因此腐胺或亚精胺而不是胍丁胺作为 spuA-spuI的诱导分子。 不同的启动子。 S1核酸酶作图进一步证实了多胺对发散启动子转录的诱导作用并定位了转录起始位点。用在腐胺或亚精胺上生长的细胞的提取物进行的凝胶阻滞分析表明存在与发散启动子区域相互作用的多胺响应性调节蛋白。最后,在 cbrB 突变体中缺少腐胺诱导的 spuA 表达和腐胺氨基转移酶( spuC )的形成表明 spu 操纵子可能受全球CbrAB两组分系统的调节,可能是通过推定的多胺响应转录激活因子来调控的。

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