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Mossbauer studies of the iron-sulfur cluster-free hydrogenase: The electronic state of the mononuclear Fe active site

机译:Mossbauer研究的无铁硫团的氢化酶:单核Fe活性位点的电子状态

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The iron-sulfur cluster-free hydrogenase (Hmd) from methanogenic archaea harbors an iron-containing, light-sensitive cofactor of still unknown structure as prosthetic group. The enzyme is reversibly inhibited by CO and cyanide and is EPR silent. We report here on Mossbauer spectra of the Fe-57-labeled enzyme and of the isolated cofactor. The spectrum of the holoenzyme measured at 80 K revealed a doublet peak with an isomer shift delta = 0.06 mm center dot s(-1) and a quadrupole splitting of Delta E-Q = 0.65 mm center dot s(-1) (at pH 8.0). The signal intensity corresponded to the enzyme concentration assuming 1 Fe per mol active site. Upon addition of CO or cyanide to the enzyme, the isomer shift decreased to -0.03 mm center dot s(-1) and -0.00(1) mm center dot s(-1), and the quadrupole splitting increased to 1.38 mm center dot s(-1) and 1.75 mm center dot s(-1), respectively. The three spectra could be perfectly simulated assuming the presence of only one type of iron in Hmd. The low isomer shift is characteristic for Fe in a low oxidation state (0, +1, +2). When the spectra of the holoenzyme and of the CO- or cyanide-inhibited enzyme were measured at 4 K in a magnetic field of 4 and 7 T, the spectra obtained could be simulated assuming the presence of only the external magnetic field, which excludes that the iron in the active site of Hmd is Fe(l), high-spin Fe(0), or high-spin Fe(II). Mossbauer spectra of the isolated Hmd cofactor are also reported.
机译:来自产甲烷的古细菌的无铁硫簇的加氢酶(Hmd)含有一个仍未知结构的含铁光敏辅因子作为辅基。该酶被CO和氰化物可逆地抑制,并且是EPR沉默的。我们在此报告Fe-57标记的酶和分离的辅因子的Mossbauer光谱。在80 K下测得的全酶谱显示出一个双峰峰,其异构体位移增量= 0.06 mm中心点s(-1),四极分裂Delta EQ = 0.65 mm中心点s(-1)(在pH 8.0时) 。假设每摩尔活性位点1 Fe,信号强度对应于酶浓度。向酶中添加CO或氰化物后,异构体位移降低到-0.03 mm中心点s(-1)和-0.00(1)mm中心点s(-1),四极分裂增加到1.38 mm中心点s(-1)和1.75毫米中心点s(-1)。假设Hmd中仅存在一种铁,则可以完美模拟这三个光谱。低异构体位移是低氧化态(0,+ 1,+ 2)下Fe的特征。当在4 T和7 T的磁场中于4 K下测量全酶和抑制CO或氰化物的酶的光谱时,可以假设仅存在外部磁场来模拟获得的光谱,这排除了Hmd的活性位中的铁为Fe(l),高自旋Fe(0)或高自旋Fe(II)。还报道了分离的Hmd辅因子的Mossbauer光谱。

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