首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >EPR characterization of the molybdenum(V) forms of formate dehydrogenase from Desulfovibrio desulfuricans ATCC 27774 upon formate reduction
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EPR characterization of the molybdenum(V) forms of formate dehydrogenase from Desulfovibrio desulfuricans ATCC 27774 upon formate reduction

机译:甲酸酯还原后脱硫弧菌ATCC 27774的甲酸(V)形式的甲酸脱氢酶的EPR表征

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The EPR characterization of the molybdenum(V) forms obtained on formate reduction of both as-prepared and inhibited formate dehydrogenase from Desulfovibrio desulfuricans ATCC 27774, an enzyme that catalyzes the oxidation of formate to CO(2), is reported. The Mo(V) EPR signal of the as-prepared formate-reduced enzyme is rhombic (g(max)=2.012, g(mid)=1.996, g(min)=1.985) and shows hyperfine coupling with two nuclear species with I=1/2. One of them gives an anisotropic splitting and is not solvent exchangeable (A(max)=11.7, A(mid)=A(min)=non-detectable, A-values in cm(-1)x10(-4)). The second species is exchangeable with solvent and produces a splitting at the three principal g-values (A(max)=7.7, A(mid)=10.0, A(min)=9.3). The hyperfine couplings of the non-solvent and solvent exchangeable nuclei are assigned to the hydrogen atoms of the beta-methylene carbon of a selenocysteine and to a Mo ligand whose nature, sulfydryl or hydroxyl, is still in debate. The Mo(V) species obtained in the presence of inhibitors (azide or cyanide) yields a nearly axial EPR signal showing only one detectable splitting given by nuclear species with I=1/2 (g(max)=2.092, g(mid)=2.000, g(min)=1.989, A(max)=non-detectable, A(mid)=A(min)=7.0), which is originated from the alpha-proton donated by the formate to a proximal ligand of the molybdenum. The possible structures of both paramagnetic molybdenum species (observed upon formate reduction in presence and absence of inhibitors) are discussed in comparison with the available structural information of this enzyme and the structural and EPR properties of the closely related formate dehydrogenase-H from Escherichia coli.
机译:EPR表征的钼(V)形式从甲硫代脱硫弧菌ATCC 27774(一种催化甲酸盐氧化为CO(2)的酶)制备的和抑制的甲酸盐脱氢酶的甲酸盐还原反应而获得的EPR表征。所制备的甲酸酯还原酶的Mo(V)EPR信号呈菱形(g(max)= 2.012,g(mid)= 1.996,g(min)= 1.985)并显示与两个具有I的核种的超精细偶联= 1/2。其中一个给出各向异性分裂,并且不可交换溶剂(A(max)= 11.7,A(mid)= A(min)=不可检测,A值以cm(-1)x10(-4)表示)。第二种可与溶剂交换,并在三个主要g值处产生分裂(A(max)= 7.7,A(mid)= 10.0,A(min)= 9.3)。非溶剂和溶剂可交换核的超精细偶合被分配给硒代半胱氨酸的β-亚甲基碳原子上的氢原子和其性质(巯基或羟基)仍在争论中的Mo配体。在抑制剂(叠氮化物或氰化物)存在下获得的Mo(V)物种产生了近乎轴向的EPR信号,该信号仅显示了一种由I = 1/2(g(max)= 2.092,g(mid) = 2.000,g(min)= 1.989,A(max)=不可检测,A(mid)= A(min)= 7.0),其起源于甲酸盐向甲酚的近端配体提供的α-质子。钼。与该酶的可用结构信息以及来自大肠杆菌的密切相关的甲酸脱氢酶-H的结构和EPR性质进行了比较,讨论了两种顺磁性钼物种的可能结构(在存在和不存在抑制剂的情况下,甲酸还原后均可观察到)。

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