首页> 美国卫生研究院文献>Journal of Bacteriology >FpvIR Control of fpvA Ferric Pyoverdine Receptor Gene Expression in Pseudomonas aeruginosa: Demonstration of an Interaction between FpvI and FpvR and Identification of Mutations in Each Compromising This Interaction
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FpvIR Control of fpvA Ferric Pyoverdine Receptor Gene Expression in Pseudomonas aeruginosa: Demonstration of an Interaction between FpvI and FpvR and Identification of Mutations in Each Compromising This Interaction

机译:铜绿假单胞菌中fpvA铁的Pyoverdine受体基因表达的FpvIR控制:演示FpvI和FpvR之间的相互作用以及每种相互作用中突变的鉴定

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摘要

FpvR is a presumed cytoplasmic membrane-associated anti-sigma factor that controls the activities of extracytoplasmic function sigma factors PvdS and FpvI responsible for transcription of pyoverdine biosynthetic genes and the ferric pyoverdine receptor gene, fpvA, respectively. Using deletion analysis and an in vivo bacterial two-hybrid system, FpvR interaction with these σ factors was confirmed and shown to involve the cytoplasmic N-terminal 67 amino acid resides of FpvR. FpvR bound specifically to a C-terminal region of FpvI corresponding to region 4 of the σ70 family of sigma factors. FpvR and FpvI mutant proteins compromised for this interaction were generated by random and site-directed PCR mutagenesis and invariably contained secondary structure-altering proline substitution in predicted α-helices within the FpvR N terminus or FpvI region 4. PvdS was shown to bind to the same N-terminal region of FpvR, and FpvR mutations compromising FpvI binding also compromised PvdS binding, although some mutations had a markedly greater impact on PvdS binding. Apparently, these two σ factors bind to FpvR in a substantially similar but not identical fashion. Intriguingly, defects in FpvR binding correlated with a substantial drop in yields of the FpvI and to a lesser extent PvdS σ factors, suggesting that FpvR-bound FpvI and PvdS are stable while free and active sigma factor is prone to turnover.
机译:FpvR是一种推测的细胞质膜相关抗sigma因子,它控制胞外功能sigma因子PvdS和FpvI的活性,这些因子分别负责pyoverdine生物合成基因和铁pyoverdine受体基因fpvA的转录。使用缺失分析和体内细菌双杂交系统,证实了FpvR与这些σ因子的相互作用,并显示涉及FpvR的胞质N末端67个氨基酸。 FpvR与FpvI的C端区域特异性结合,该区域对应于σ 70 家族sigma因子的区域4。受此相互作用影响的FpvR和FpvI突变蛋白是通过随机和定点PCR诱变产生的,并且在FpvR N末端或FpvI区域4内的预测α螺旋中始终包含改变二级结构的脯氨酸取代。 FpvR的相同N末端区域以及损害FpvI结合的FpvR突变也损害了PvdS结合,尽管某些突变对PvdS结合的影响明显更大。显然,这两个σ因子以基本相似但不完全相同的方式与FpvR结合。有趣的是,FpvR结合的缺陷与FpvI的产量大幅下降以及较小程度的PvdSσ因子相关,这表明FpvR结合的FpvI和PvdS是稳定的,而游离和活性sigma因子则容易发生周转。

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