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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 >Incorporation of either molybdenum or tungsten into formate dehydrogenase from Desulfovibrio alaskensis NCIMB 13491; EPR assignment of the proximal iron-sulfur cluster to the pterin cofactor in formate dehydrogenases from sulfate-reducing bacteria
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Incorporation of either molybdenum or tungsten into formate dehydrogenase from Desulfovibrio alaskensis NCIMB 13491; EPR assignment of the proximal iron-sulfur cluster to the pterin cofactor in formate dehydrogenases from sulfate-reducing bacteria

机译:将钼或钨掺入来自阿拉斯加脱硫弧菌的甲酸脱氢酶NCIMB 13491;在还原硫酸盐细菌的甲酸脱氢酶中,近端铁-硫簇向蝶呤辅因子的EPR分配

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摘要

We report the characterization of the molecular properties and EPR studies of a new formate dehydrogenase (FDH) from the sulfate-reducing organism Desulfovibrio alaskensis NCIMB 13491. FDHs are enzymes that catalyze the two-electron oxidation of formate to carbon dioxide in several aerobic and anaerobic organisms. D. alaskensis FDH is a heterodimeric protein with a molecular weight of 126±2 kDa composed of two subunits, α=93±3 kDa and β=32±2 kDa, which contains 6±1 Fe/molecule, 0.4±0.1 Mo/molecule, 0.3±0.1 W/molecule, and 1.3±0.1 guanine monophosphate nucleotides. The UV-vis absorption spectrum of D. alaskensis FDH is typical of an iron-sulfur protein with a broad band around 400 nm. Variable-temperature EPR studies performed on reduced samples of D. alaskensis FDH showed the presence of signals associated with the different paramagnetic centers of D. alaskensis FDH. Three rhombic signals having g-values and relaxation behavior characteristic of [4Fe-4S] clusters were observed in the 5–40 K temperature range. Two EPR signals with all the g-values less than two, which accounted for less than 0.1 spin/protein, typical of mononuclear Mo(V) and W(V), respectively, were observed. The signal associated with the W(V) ion has a larger deviation from the free electron g-value, as expected for tungsten in a d1 configuration, albeit with an unusual relaxation behavior. The EPR parameters of the Mo(V) signal are within the range of values typically found for the slow-type signal observed in several Mo-containing proteins belonging to the xanthine oxidase family of enzymes. Mo(V) resonances are split at temperatures below 50 K by magnetic coupling with one of the Fe/S clusters. The analysis of the inter-center magnetic interaction allowed us to assign the EPR-distinguishable iron-sulfur clusters with those seen in the crystal structure of a homologous enzyme.
机译:我们报告了从硫酸盐还原生物体Desulfovibrio alaskensis NCIMB 13491的一种新的甲酸脱氢酶(FDH)的分子性质和EPR研究的表征。FDHs是在几种需氧和厌氧条件下将甲酸的两电子氧化催化为二氧化碳的酶。生物。 Dlas alaskensis FDH是一种异源二聚体蛋白,分子量为126±2 kDa,由两个亚基α= 93±3 kDa和β= 32±2 kDa组成,包含6±1 Fe /分子,0.4±0.1 Mo /分子,0.3±0.1 W /分子和1.3±0.1鸟嘌呤单磷酸核苷酸。阿拉斯加FDH的紫外可见吸收光谱是典型的铁硫蛋白,具有约400 nm的宽带。对阿拉斯加州乳杆菌FDH的还原样品进行的可变温度EPR研究表明,存在与阿拉斯加州乳杆菌FDH的不同顺磁中心相关的信号。在5-40 K的温度范围内观察到三个具有g值和[4Fe-4S]团簇弛豫行为特征的菱形信号。观察到两个gPR值均小于2的EPR信号,它们分别占单核Mo(V)和W(V)的典型值,少于纺丝/蛋白质的0.1。与W(V)离子相关的信号与自由电子g值有较大的偏差,正如d1构型的钨所预期的那样,尽管具有异常的弛豫行为。 Mo(V)信号的EPR参数处于通常在属于黄嘌呤氧化酶家族的几种含Mo蛋白质中观察到的慢型信号的典型值范围内。 Mo(V)共振通过与Fe / S团簇之一的磁耦合在低于50 K的温度下分裂。中心间磁相互作用的分析使我们能够为EPR可区分的铁硫簇分配同源酶的晶体结构中看到的那些。

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