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Iron-Sulfur Cluster Interconversions in Biotin Synthase: Dissociation and Reassociation of Iron during Conversion of 2Fe-2S to 4Fe-4S Clusters

机译:生物素合酶中铁-硫簇的相互转化:2Fe-2S簇向4Fe-4S簇的转化过程中铁的解离和重新缔合

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摘要

Biotin synthase catalyzes the insertion of a sulfur atom into the saturated C6 and C9 carbons of dethiobiotin. This reaction has long been presumed to occur through radical chemistry, and recent experimental results suggest that biotin synthase belongs to a family of enzymes that contain an iron-sulfur cluster and reductively cleave S-adenosylmethionine, forming an enzyme or substrate radical, 5′-deoxyadenosine, and methionine. Biotin synthase (BioB) is aerobically purified as a dimer of 38 kDa monomers that contains two [2Fe-2S]2+ clusters per dimer. Maximal in vitro biotin synthesis requires incubation of BioB with dethiobiotin, AdoMet, reductants, exogenous iron, and crude bacterial protein extracts. It has previously been shown that reduction of BioB with dithionite in 60% ethylene glycol produces one [4Fe-4S]2+/1+ cluster per dimer. In the present work, we use UV/visible and electron paramagnetic resonance spectroscopy to show that [2Fe-2S] to [4Fe-4S] cluster conversion occurs through rapid dissociation of iron from the protein followed by rate-limiting reassociation. While in 60% ethylene glycol the product of dithionite reduction is one [4Fe-4S]2+ cluster per dimer, the product in water is one [4Fe-4S]1+ cluster per dimer. Further, incubation with excess iron, sulfide, and dithiothreitol produces protein that contains two [4Fe-4S]2+ clusters per dimer; subsequent reduction with dithionite produces two [4Fe-4S]1+ clusters per BioB dimer. BioB that contains two [4Fe-4S]2+/1+ clusters per dimer is rapidly and reversibly reduced and oxidized, suggesting that this is the redox-active form of the iron-sulfur cluster in the anaerobic enzyme.
机译:生物素合酶催化将硫原子插入脱硫生物素的饱和C6和C9碳中。长期以来,人们一直认为该反应是通过自由基化学反应发生的,最近的实验结果表明,生物素合酶属于一种酶家族,该酶含有铁硫簇并还原性裂解S-腺苷甲硫氨酸,形成酶或底物自由基5'-脱氧腺苷和蛋氨酸。需氧纯化生物素合酶(BioB),以38 kDa单体的二聚体形式存在,每个二聚体包含两个[2Fe-2S] 2 + 簇。体外生物素的最大合成需要将BioB与脱硫生物素,AdoMet,还原剂,外源铁和粗细菌蛋白提取物一起孵育。以前已经表明,在60%的乙二醇中用连二亚硫酸盐还原BioB会在每个二聚体中产生一个[4Fe-4S] 2 + / 1 + 簇。在目前的工作中,我们使用紫外线/可见光和电子顺磁共振波谱来显示[2Fe-2S]到[4Fe-4S]团簇转化是通过铁与蛋白质的快速解离,然后进行限速重结合而发生的。在60%乙二醇中,连二亚硫酸盐还原的产物是每个二聚体一个[4Fe-4S] 2 + 簇,而水中的产物是一个[4Fe-4S] 1 + 每个二聚体成簇。此外,与过量的铁,硫化物和二硫苏糖醇一起温育会产生每个二聚体包含两个[4Fe-4S] 2 + 簇的蛋白质。随后用连二亚硫酸盐还原,每个BioB二聚体产生两个[4Fe-4S] 1 + 簇。每个二聚体包含两个[4Fe-4S] 2 + / 1 + 簇的BioB迅速且可逆地被还原和氧化,表明这是厌氧状态下铁硫簇的氧化还原活性形式酶。

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