Salerno J C, Lim J, King T E, Blum H, Ohnishi T
J Biol Chem. 1979 Jun 10;254(11):4828-35.
Two binuclear iron-sulfur clusters (designated S-1 and S-2) are present in succinate dehydrogenase in approximately equal concentration to that of flavin. The large difference in their midpoint potentials (0 and -400 mV, respectively, in the soluble enzyme) permits the acquisition of individual electron paramagnetic resonance spectra characterized by nearly identical rhombic g tensors (gz = 2.025, gy = 1.93, gx = 1.905). Spin-coupling between the two centers is manifested by broadening and splitting of spectra of reconstitutively active and inactive succinate dehydrogenase, respectively, as the temperature is lowered; relief of power saturation of Center S-1 spectra on reduction of Center S 2; and observation of half-field ("delta ms = 2") signals in the dithionite-reduced enzyme. Saturation behavior of fully reduced dehydrogenase is consistent with the presence of S-1 and S-2 at equivalent concentrations/molecule. Simulation of the spin-coupled spectra, assuming dipolar interaction, provides information on molecular structure. Electron paramagnetic resonance spectra of the enzyme in 80% dimethylsulfoxide are nearly identical to the characteristic binuclear spectra obtained with adrenodoxin. These data provide additional evidence for binuclear structure of both Center S-1 and S-2. The extremely fast relaxation of Center S-2 at low temperatures would imply either an anomalously small value of J or an alternative relaxation mechanism, possibly due to the coupling between S-1 and S-2.
琥珀酸脱氢酶中存在两个双核铁硫簇(分别命名为S-1和S-2),其浓度与黄素的浓度大致相等。它们中点电位的巨大差异(在可溶性酶中分别为0和 -400 mV)使得能够获得各自的电子顺磁共振谱,其特征是具有几乎相同的菱形g张量(gz = 2.025,gy = 1.93,gx = 1.905)。随着温度降低,两个中心之间的自旋耦合分别表现为重组活性和无活性琥珀酸脱氢酶谱的展宽和分裂;中心S-2还原时中心S-1谱的功率饱和解除;以及在连二亚硫酸盐还原的酶中观察到半场(“δms = 2”)信号。完全还原的脱氢酶的饱和行为与每个分子中存在等量的S-1和S-2一致。假设存在偶极相互作用,对自旋耦合谱进行模拟可提供有关分子结构的信息。该酶在80%二甲基亚砜中的电子顺磁共振谱与用肾上腺皮质铁氧还蛋白获得的特征性双核谱几乎相同。这些数据为中心S-1和S-2的双核结构提供了额外证据。中心S-2在低温下极快的弛豫意味着要么J值异常小,要么存在另一种弛豫机制,这可能是由于S-1和S-2之间的耦合所致。