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IscA中的铜结合抑制大肠杆菌中的铁硫簇组装。

Copper binding in IscA inhibits iron-sulphur cluster assembly in Escherichia coli.

作者信息

Tan Guoqiang, Cheng Zishuo, Pang Yilin, Landry Aaron P, Li Jianghui, Lu Jianxin, Ding Huangen

机构信息

Laboratory of Molecular Medicine, School of Laboratory Medicine and Life Science, Wenzhou Medical University, Wenzhou, Zhejiang, 325035, China; Department of Biological Sciences, Louisiana State University, Baton Rouge, LA, 70803, USA.

出版信息

Mol Microbiol. 2014 Aug;93(4):629-44. doi: 10.1111/mmi.12676. Epub 2014 Jul 8.

Abstract

Among the iron-sulphur cluster assembly proteins encoded by gene cluster iscSUA-hscBA-fdx in Escherichia coli, IscA has a unique and strong iron binding activity and can provide iron for iron-sulphur cluster assembly in proteins in vitro. Deletion of IscA and its paralogue SufA results in an E. coli mutant that fails to assemble [4Fe-4S] clusters in proteins under aerobic conditions, suggesting that IscA has a crucial role for iron-sulphur cluster biogenesis. Here we report that among the iron-sulphur cluster assembly proteins, IscA also has a strong and specific binding activity for Cu(I) in vivo and in vitro. The Cu(I) centre in IscA is stable and resistant to oxidation under aerobic conditions. Mutation of the conserved cysteine residues that are essential for the iron binding in IscA abolishes the copper binding activity, indicating that copper and iron may share the same binding site in the protein. Additional studies reveal that copper can compete with iron for the metal binding site in IscA and effectively inhibits the IscA-mediated [4Fe-4S] cluster assembly in E. coli cells. The results suggest that copper may not only attack the [4Fe-4S] clusters in dehydratases, but also block the [4Fe-4S] cluster assembly in proteins by targeting IscA in cells.

摘要

在大肠杆菌中由基因簇iscSUA-hscBA-fdx编码的铁硫簇组装蛋白中,IscA具有独特且强大的铁结合活性,并且能够在体外为蛋白质中的铁硫簇组装提供铁。缺失IscA及其旁系同源物SufA会导致大肠杆菌突变体在有氧条件下无法在蛋白质中组装[4Fe-4S]簇,这表明IscA在铁硫簇生物合成中具有关键作用。在此我们报告,在铁硫簇组装蛋白中,IscA在体内和体外对Cu(I)也具有强大且特异性的结合活性。IscA中的Cu(I)中心在有氧条件下稳定且抗氧化。IscA中对铁结合至关重要的保守半胱氨酸残基发生突变会消除铜结合活性,这表明铜和铁可能在该蛋白质中共享相同的结合位点。进一步的研究表明,铜可以与铁竞争IscA中的金属结合位点,并有效抑制大肠杆菌细胞中IscA介导的[4Fe-4S]簇组装。结果表明,铜不仅可能攻击脱水酶中的[4Fe-4S]簇,还可能通过靶向细胞中的IscA来阻断蛋白质中的[4Fe-4S]簇组装。

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