Outten F Wayne, Djaman Ouliana, Storz Gisela
Cell Biology and Metabolism Branch, National Institute of Child Health and Human Development, Bethesda, Maryland 20892, USA.
Mol Microbiol. 2004 May;52(3):861-72. doi: 10.1111/j.1365-2958.2004.04025.x.
The suf and isc operons of Escherichia coli have been implicated in Fe-S cluster assembly. However, it has been unclear why E. coli has two systems for Fe-S cluster biosynthesis. We have examined the regulatory characteristics and mutant phenotypes of both operons to discern if the two operons have redundant functions or if their cellular roles are divergent. Both operons are similarly induced by hydrogen peroxide and the iron chelator 2,2'-dipyridyl, although by different mechanisms. Regulation of the isc operon is mediated by IscR, whereas the suf operon requires OxyR and IHF for the response to oxidative stress and Fur for induction by iron starvation. Simultaneous deletion of iscS and most suf genes is synthetically lethal. However, although the suf and isc operons have overlapping functions, they act as distinct complexes because the SufS desulphurase alone cannot substitute for the IscS enzyme. In addition, suf deletion mutants are more sensitive to iron starvation than isc mutants, and the activity of the Fe-S enzyme gluconate dehydratase is diminished in the suf mutant during iron starvation. These findings are consistent with the model that the isc operon encodes the housekeeping Fe-S cluster assembly system in E. coli, whereas the suf operon is specifically adapted to synthesize Fe-S clusters when iron or sulphur metabolism is disrupted by iron starvation or oxidative stress.
大肠杆菌的suf和isc操纵子与铁硫簇组装有关。然而,目前尚不清楚为什么大肠杆菌有两个铁硫簇生物合成系统。我们研究了这两个操纵子的调控特性和突变体表型,以确定这两个操纵子是否具有冗余功能,或者它们在细胞中的作用是否不同。尽管机制不同,但这两个操纵子都能被过氧化氢和铁螯合剂2,2'-联吡啶类似地诱导。isc操纵子的调控由IscR介导,而suf操纵子在应对氧化应激时需要OxyR和IHF,在铁饥饿诱导时需要Fur。同时缺失iscS和大多数suf基因具有合成致死性。然而,尽管suf和isc操纵子具有重叠功能,但它们作为不同的复合体起作用,因为单独的SufS脱硫酶不能替代IscS酶。此外,suf缺失突变体比isc突变体对铁饥饿更敏感,并且在铁饥饿期间,suf突变体中铁硫酶葡萄糖酸脱水酶的活性降低。这些发现与以下模型一致:isc操纵子编码大肠杆菌中的管家铁硫簇组装系统,而suf操纵子则专门用于在铁或硫代谢因铁饥饿或氧化应激而中断时合成铁硫簇。