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氧化还原反应调节因子Anr和Dnr的双重作用对铜绿假单胞菌hemF和hemN的调控

Regulation of Pseudomonas aeruginosa hemF and hemN by the dual action of the redox response regulators Anr and Dnr.

作者信息

Rompf A, Hungerer C, Hoffmann T, Lindenmeyer M, Römling U, Gross U, Doss M O, Arai H, Igarashi Y, Jahn D

机构信息

Institut für Organische Chemie und Biochemie, Albert-Ludwigs-Universität Freiburg, Freiburg im Breisgau, Germany.

出版信息

Mol Microbiol. 1998 Aug;29(4):985-97. doi: 10.1046/j.1365-2958.1998.00980.x.

Abstract

The oxidative decarboxylation of coproporphyrinogen III catalysed by an oxygen-dependent oxidase (HemF) and an oxygen-independent dehydrogenase (HemN) is one of the key regulatory points of haem biosynthesis in Pseudomonas aeruginosa. To investigate the oxygen-dependent regulation of hemF and hemN, the corresponding genes were cloned from the P. aeruginosa chromosome. Recognition sequences for the Fnr-type transcriptional regulator Anr were detected -44.5 bp from the 5' end of the hemF mRNA transcript and at an optimal distance of -41.5 bp with respect to the transcriptional start of hemN. An approximately 10-fold anaerobic induction of hemN gene expression was mediated by the dual action of Anr and a second Fnr-type regulator, Dnr. Regulation by both proteins required the Anr recognition sequence. Surprisingly, aerobic expression of hemN was dependent only on Anr. An anr mutant did not contain detectable amounts of hemN mRNA and accumulated coproporphyrin III both aerobically and anaerobically, indicating the importance of HemN for aerobic and anaerobic haem formation. Mutation of hemN and hemF did not abolish aerobic or anaerobic growth, indicating the existence of an additional HemN-type enzyme, which was termed HemZ. Expression of hemF was induced approximately 20-fold during anaerobic growth and, as was found for hemN, both Anr and Dnr were required for anaerobic induction. Paradoxically, oxygen is necessary for HemF catalysis, suggesting the existence of an additional physiological function for the P. aeruginosa HemF protein.

摘要

由氧依赖性氧化酶(HemF)和氧非依赖性脱氢酶(HemN)催化的粪卟啉原III氧化脱羧作用是铜绿假单胞菌血红素生物合成的关键调控点之一。为了研究hemF和hemN的氧依赖性调控,从铜绿假单胞菌染色体中克隆了相应基因。在hemF mRNA转录本5'端-44.5 bp处以及相对于hemN转录起始点-41.5 bp的最佳距离处检测到Fnr型转录调节因子Anr的识别序列。hemN基因表达在厌氧条件下约有10倍的诱导是由Anr和第二个Fnr型调节因子Dnr的双重作用介导的。两种蛋白质的调控都需要Anr识别序列。令人惊讶的是,hemN的需氧表达仅依赖于Anr。anr突变体在需氧和厌氧条件下均未检测到hemN mRNA,且积累了粪卟啉原III,这表明HemN对于需氧和厌氧血红素形成很重要。hemN和hemF的突变并未消除需氧或厌氧生长,这表明存在一种额外的HemN型酶,称为HemZ。hemF的表达在厌氧生长期间诱导约20倍,并且正如hemN的情况一样,厌氧诱导需要Anr和Dnr。矛盾的是,氧气对于HemF催化是必需的,这表明铜绿假单胞菌HemF蛋白存在额外的生理功能。

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