Tan Guoqiang, Lu Jianxin, Bitoun Jacob P, Huang Hao, Ding Huangen
Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, U.S.A.
Biochem J. 2009 May 27;420(3):463-72. doi: 10.1042/BJ20090206.
IscA/SufA paralogues are the members of the iron-sulfur cluster assembly machinery in Escherichia coli. Whereas deletion of either IscA or SufA has only a mild effect on cell growth, deletion of both IscA and SufA results in a null-growth phenotype in minimal medium under aerobic growth conditions. Here we report that cell growth of the iscA/sufA double mutant (E. coli strain in which both iscA and sufA had been in-frame-deleted) can be partially restored by supplementing with BCAAs (branched-chain amino acids) and thiamin. We further demonstrate that deletion of IscA/SufA paralogues blocks the [4Fe-4S] cluster assembly in IlvD (dihydroxyacid dehydratase) of the BCAA biosynthetic pathway in E. coli cells under aerobic conditions and that addition of the iron-bound IscA/SufA efficiently promotes the [4Fe-4S] cluster assembly in IlvD and restores the enzyme activity in vitro, suggesting that IscA/SufA may act as an iron donor for the [4Fe-4S] cluster assembly under aerobic conditions. Additional studies reveal that IscA/SufA are also required for the [4Fe-4S] cluster assembly in enzyme ThiC of the thiamin-biosynthetic pathway, aconitase B of the citrate acid cycle and endonuclease III of the DNA-base-excision-repair pathway in E. coli under aerobic conditions. Nevertheless, deletion of IscA/SufA does not significantly affect the [2Fe-2S] cluster assembly in the redox transcription factor SoxR, ferredoxin and the siderophore-iron reductase FhuF. The results suggest that the biogenesis of the [4Fe-4S] clusters and the [2Fe-2S] clusters may have distinct pathways and that IscA/SufA paralogues are essential for the [4Fe-4S] cluster assembly, but are dispensable for the [2Fe-2S] cluster assembly in E. coli under aerobic conditions.
IscA/SufA同源物是大肠杆菌中铁硫簇组装机制的成员。虽然单独缺失IscA或SufA对细胞生长只有轻微影响,但在有氧生长条件下,同时缺失IscA和SufA会导致在基本培养基中出现无生长表型。在此我们报告,通过补充支链氨基酸(BCAAs)和硫胺素,可以部分恢复iscA/sufA双突变体(iscA和sufA均已进行框内缺失的大肠杆菌菌株)的细胞生长。我们进一步证明,在有氧条件下,缺失IscA/SufA同源物会阻断大肠杆菌细胞中支链氨基酸生物合成途径的IlvD(二羟基酸脱水酶)中的[4Fe-4S]簇组装,而添加与铁结合的IscA/SufA可有效促进IlvD中的[4Fe-4S]簇组装并在体外恢复酶活性,这表明IscA/SufA可能在有氧条件下作为[4Fe-4S]簇组装的铁供体。进一步的研究表明,在有氧条件下,IscA/SufA对于大肠杆菌中硫胺素生物合成途径的酶ThiC、柠檬酸循环的乌头酸酶B和DNA碱基切除修复途径的核酸内切酶III中的[4Fe-4S]簇组装也是必需的。然而,缺失IscA/SufA对氧化还原转录因子SoxR、铁氧化还原蛋白和铁载体铁还原酶FhuF中的[2Fe-2S]簇组装没有显著影响。结果表明,[4Fe-4S]簇和[2Fe-2S]簇的生物合成可能具有不同的途径,并且IscA/SufA同源物对于[4Fe-4S]簇组装至关重要,但在有氧条件下对于大肠杆菌中的[2Fe-2S]簇组装是可有可无的。