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PchR是铜绿假单胞菌中铁载体受体基因(fptA)表达的调控因子,兼具激活剂和阻遏物的功能。

PchR, a regulator of ferripyochelin receptor gene (fptA) expression in Pseudomonas aeruginosa, functions both as an activator and as a repressor.

作者信息

Heinrichs D E, Poole K

机构信息

Department of Microbiology and Immunology, Queen's University, Kingston, Ontario, Canada.

出版信息

J Bacteriol. 1996 May;178(9):2586-92. doi: 10.1128/jb.178.9.2586-2592.1996.

Abstract

The product of the pchR gene, an AraC-like regulatory protein, is required for production of the FptA ferric pyochelin receptor in response to iron limitation and pyochelin (D. E. Heinrichs and K. Poole, J. Bacteriol. 175:5882-5889, 1993). The influence of iron, pyochelin, PchR, and FptA on fptA and pchR gene expression was assessed with fptA-lacZ and pchR-lacZ transcriptional fusions. As was expected, the expression of fptA decreased dramatically following the inactivation of pchR by the insertion of an OmegaHg cartridge, although the effect (> 10-fold) was not as dramatic as that of pyochelin deficiency, which obviated fptA gene expression. Insertional inactivation of pchR in a pyochelin-deficient (Pch-) background restored fptA expression to levels observed in the pyochelin-producing (Pch+) PchR- strain, suggesting that PchR represses fptA expression in the absence of pyochelin. Consistent with this, the cloned gene caused a five-fold decrease in the expression of the fptA-lacZ fusion in Escherichia coli. pchR gene expression was inducible by iron limitation, a result in agreement with the previous identification of a Fur box upstream of the gene, although the magnitude of the induction was less than that observed for fptA in response to iron limitation. Expression of pchR was effectively absent in a pyochelin-deficient strain, and insertional inactivation of pchR in a Pch+ or Pch- background caused an increase in pchR gene expression. PchR, thus, negatively regulates its own expression. Two related heptameric sequences, CGAGGAA and CGTGGAT, were identified upstream of the putative -35 region of both fptA and pchR and may function as a binding site for PchR. Insertional inactivation of fptA caused a marked decrease in fptA expression in a Pch+ background and obviated the apparent repression of fptA expression in a Pch- background, reminiscent of the effect of a pchR mutation. The fptA mutant did not, however, exhibit a defect in pchR expression. Interestingly, fptA mutants were unable to grow in the presence of pyochelin, suggesting that FptA is the sole outer membrane receptor for ferric pyochelin. These data indicate that PchR functions as both an activator and a repressor in controlling the expression of fptA and pchR. The involvement of FptA in this control is unclear, although it may be important in mediating the pyochelin effect on fptA expression, possibly by modulating PchR activity.

摘要

pchR基因的产物是一种类AraC调节蛋白,在铁限制和焦螯合铁存在时,它是产生FptA铁焦螯合铁受体所必需的(D. E. 海因里希斯和K. 普尔,《细菌学杂志》175:5882 - 5889,1993年)。利用fptA - lacZ和pchR - lacZ转录融合体评估了铁、焦螯合铁、PchR和FptA对fptA和pchR基因表达的影响。正如预期的那样,通过插入OmegaHg盒使pchR失活后,fptA的表达显著下降,尽管这种影响(>10倍)不如焦螯合铁缺乏时那么显著,焦螯合铁缺乏会消除fptA基因的表达。在焦螯合铁缺陷(Pch -)背景下pchR的插入失活使fptA表达恢复到在产生焦螯合铁(Pch +)的PchR - 菌株中观察到的水平,这表明在没有焦螯合铁的情况下PchR抑制fptA的表达。与此一致的是,克隆基因使大肠杆菌中fptA - lacZ融合体的表达降低了五倍。pchR基因表达可被铁限制诱导,这一结果与先前在该基因上游鉴定出的一个Fur框一致,尽管诱导幅度小于fptA对铁限制的反应。在焦螯合铁缺陷菌株中pchR的表达实际上不存在,在Pch +或Pch - 背景下pchR的插入失活导致pchR基因表达增加。因此,PchR负向调节其自身的表达。在fptA和pchR假定的 - 35区域上游鉴定出两个相关的七聚体序列,CGAGGAA和CGTGGAT,它们可能作为PchR的结合位点。在Pch +背景下fptA的插入失活导致fptA表达显著下降,并消除了Pch - 背景下fptA表达的明显抑制,这让人想起pchR突变的影响。然而,fptA突变体在pchR表达上没有表现出缺陷。有趣的是,fptA突变体在焦螯合铁存在时无法生长,这表明FptA是铁焦螯合铁的唯一外膜受体。这些数据表明,PchR在控制fptA和pchR的表达中既作为激活剂又作为抑制剂发挥作用。FptA在这种调控中的参与尚不清楚,尽管它可能在介导焦螯合铁对fptA表达的影响中起重要作用,可能是通过调节PchR的活性。

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