首页> 美国卫生研究院文献>ACS AuthorChoice >2Fe-2S-Ferredoxin Binds Directly to Cysteine Desulfuraseand Supplies an Electron for Iron–Sulfur Cluster Assembly butIs Displaced by the Scaffold Protein or Bacterial Frataxin
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2Fe-2S-Ferredoxin Binds Directly to Cysteine Desulfuraseand Supplies an Electron for Iron–Sulfur Cluster Assembly butIs Displaced by the Scaffold Protein or Bacterial Frataxin

机译:2Fe-2S-铁氧还蛋白直接与半胱氨酸脱硫酶结合为铁硫团簇组装提供电子但被支架蛋白或细菌Frataxin取代

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摘要

Escherichia coli [2Fe-2S]-ferredoxin (Fdx) is encoded by the isc operon along with other proteins involved in the ‘house-keeping’ mechanism of iron–sulfur cluster biogenesis. Although it has been proposed that Fdx supplies electrons to reduce sulfane sulfur (S0) produced by the cysteine desulfurase (IscS) to sulfide (S2–) as required for the assembly of Fe–S clusters on the scaffold protein (IscU), direct experimental evidence for the role of Fdx has been lacking. Here, we show that Fdx (in either oxidation state) interacts directly with IscS. The interaction face on Fdx was found to include residues close to its Fe–S cluster. In addition, C328 of IscS, the residue known to pick up sulfur from the active site of IscS and deliver it to the Cys residues of IscU, formed a disulfide bridge with Fdx in the presence of an oxidizing agent. Electrons from reduced Fdx were transferred to IscS only in the presence of l-cysteine, but not to the C328S variant. We found that Fdx, IscU, and CyaY (the bacterial frataxin) compete for overlapping binding sites on IscS. This mutual exclusion explains the mechanism by which CyaY inhibits Fe–S cluster biogenesis. These results (1) show that reducedFdx supplies one electron to the IscS complex as S0 isproduced by the enzymatic conversion of Cys to Ala and (2) explainthe role of Fdx as a member of the isc operon.
机译:大肠杆菌[2Fe-2S]-铁氧还蛋白(Fdx)由isc操纵子与其他参与铁硫簇生物发生“持家”机制的蛋白质一起编码。尽管有人建议Fdx提供电子以还原半胱氨酸脱硫酶(IscS)产生的硫磺硫(S 0 )变成硫化物(S 2-),这对于Fe-S簇在支架蛋白(IscU)上的组装,缺乏Fdx作用的直接实验证据。在这里,我们显示Fdx(处于任何一种氧化状态)都直接与IscS相互作用。发现Fdx上的相互作用面包括靠近其Fe–S团簇的残基。另外,IscS的C328(已知从IscS的活性位点吸收硫并将其传递到IscU的Cys残基的残基)在氧化剂存在下与Fdx形成了二硫键。来自还原的Fdx的电子仅在l-半胱氨酸存在的情况下转移到IscS,而没有转移到C328S变体。我们发现Fdx,IscU和CyaY(细菌frataxin)竞争IscS上的重叠结合位点。这种相互排斥解释了CyaY抑制Fe–S团簇生物发生的机制。这些结果(1)表明由于S 0 为,Fdx向IscS络合物提供一个电子由Cys酶解为Ala产生的蛋白(2)解释Fdx作为isc操纵子成员的角色。

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