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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Novel structure and redox chemistry of the prosthetic groups of the iron-sulfur flavoprotein sulfide dehydrogenase from Pyrococcus furiosus; evidence for a [2Fe-2S] cluster with Asp(Cys)_3 ligands
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Novel structure and redox chemistry of the prosthetic groups of the iron-sulfur flavoprotein sulfide dehydrogenase from Pyrococcus furiosus; evidence for a [2Fe-2S] cluster with Asp(Cys)_3 ligands

机译:激烈热球菌铁硫黄素蛋白硫化物脱氢酶假体基团的新结构和氧化还原化学; Asp(Cys)_3配体的[2Fe-2S]簇的证据

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摘要

The consecutive structural genes for the iron-sulfur flavoenzyme sulfide dehydrogenase, sudB and sudA, have been identified in the genome of Pyrococcus furiosus. The translated sequences encode a heterodimeric protein with an α-subunit, SudA, of 52598 Da and a β-subunit, SudB, of 30686 Da. The α-subunit carries a Fad, a putative nucleotide binding site for NADPH, and a [2Fe-2S]~(2+, +) prosthetic group. The latter exhibit EPR g-values, 2.035, 1.908, 1.786, and reduction potential, E_(m, 8) = +80 mV, reminiscent of Rieske-type clusters; however, comparative sequence analysis indicates that this cluster is coordinated by a novel motif of one Asp and three Cys ligands. The motif is not only found in the genome of hyperthermophilic archaea and hyperthermophilic bacteria, but also in that of mesophilic Treponema pallidum. The β-subunit of sulfide dehydrogenase contains another FAD, another putative binding site for NADPH, a [3Fe-4S]~(+, 0) cluster, and a [4Fe-4S]~(2+, +) cluster. The 3Fe cluster has an unusually high reduction potential, E_(m, 8) = +230 mV. The reduced 4Fe cluster exhibits a complex EPR signal, presumably resulting from magnetic interaction of its S = 1/2 spin with the S = 2 spin of the reduced 3Fe cluster. The 4Fe cluster can be reduced with deazaflavin/EDTA/light but not with sodium dithionite; however, it is readily reduced with NADPH. SudA is highly homologous to KOD1-GO-GAT (or KOD1-GltA), a single-gene encoded protein in Pyrococcus kodakaraensis, which has been putatively identified as hyperthermophilic glutamate synthase. However, P. furiosus sulfide dehydrogenase does not have glutamate synthase activity. SudB is highly homologous to HydG, the γ-subunit of P. furiosus NiFe hydrogenase. The latter enzyme also has sulfide dehydrogenase activity. The P. furiosus genome contains a second set of consecutive genes, sudY and sudX, with very high homology to the sudB and sudA genes, and possibly encoding a sulfide dehydrogenase isoenzyme. Each subunit of sulfide dehydrogenase is a primary structural paradigm for a different class of iron-sulfur flavoproteins.
机译:在激烈热球菌的基因组中已鉴定出铁硫黄酮酶硫化物脱氢酶的连续结构基因sudB和sudA。翻译的序列编码异源二聚体蛋白,其α亚基SudA为52598 Da,β亚基SudB为30686 Da。 α亚基带有Fad,NADPH的假定核苷酸结合位点和[2Fe-2S]〜(2+,+)辅基。后者的EPR g值为2.035、1.908、1.786,还原电位E_(m,8)= +80 mV,让人联想到Rieske型簇;然而,比较序列分析表明该簇由一个Asp和三个Cys配体的新基序协调。该基序不仅存在于嗜热古细菌和嗜热细菌的基因组中,而且还存在于嗜温梅毒螺旋体中。硫化物脱氢酶的β-亚基包含另一个FAD,另一个假定的NADPH结合位点,[3Fe-4S]〜(+,0)簇和[4Fe-4S]〜(2+,+)簇。 3Fe簇具有异常高的还原电位,E_(m,8)= +230 mV。还原的4Fe团簇表现出复杂的EPR信号,大概是由于其S = 1/2自旋与还原的3Fe团簇的S = 2自旋的磁相互作用所致。脱氮黄素/ EDTA /光可还原4Fe簇,连二亚硫酸钠则不能。但是,使用NADPH可以很容易地将其减少。 SudA与KOD1-GO-GAT(或KOD1-GltA)具有高度同源性,KOD1-GO-GAT是柯达热球菌(Pyrococcus kodakaraensis)中的单基因编码蛋白,已被确定为超嗜热谷氨酸合酶。然而,狂犬病杆菌硫化物脱氢酶不具有谷氨酸合酶活性。 SudB与HydG高度同源,HydG是恶性疟原虫NiFe氢化酶的γ亚基。后一种酶也具有硫化物脱氢酶活性。恶性疟原虫基因组包含第二组连续基因sudY和sudX,与sudB和sudA基因具有非常高的同源性,并且可能编码硫化物脱氢酶同工酶。硫化物脱氢酶的每个亚基是不同类别的铁硫黄素蛋白的主要结构范例。

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