首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Orientation-selected ENDOR of the active center in Chromatium vinosum [NiFe] hydrogenase in the oxidized 'ready' state
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Orientation-selected ENDOR of the active center in Chromatium vinosum [NiFe] hydrogenase in the oxidized 'ready' state

机译:在氧化的“就绪”状态下,葡萄绒毛[NiFe]氢化酶中活性中心的定向选择ENDOR

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摘要

Electron nuclear double resonance (ENDOR) was applied to study the active site of the oxidized "ready" state, Ni_r, in the [NiFe] hydrogenase of Chromatium vinosum. The magnetic field dependence of the EPR was used to select specific subsets of molecules contributing to the ENDOR response by stepping through the EPR envelope. Three hyperfine couplings could be clearly followed over the complete field range. Two protons, H1 and H2, display a very similar large isotropic coupling of 12.5 and 12.6 MHz, respectively. Their dipolar coupling is small (2.1 and 1.4 MHz, respectively). A third proton, H3, exhibits a small isotropic coupling of 0.5 MHz and a larger anisotropic contribution of 3.5 MHz. Based on a comparison with structural data obtained from X-ray crystallography of single crystals of hydrogenases from Desulfovibrio gigas and D. vulgaris and the known g-tensor orientation of Ni_r, an assignment of the ~1H hyperfine couplings could be achieved. H1 and H2 were assigned to the #beta#-CH_2 protons of the bridging cysteine Cys533 and H3 could belong to a #beta#-CH_2 proton of Cys68 or to a protonated cysteine (-SH) of Cys68 or Cys530.
机译:应用电子核双共振(ENDOR)研究了在Chromatium v​​inosum的[NiFe]氢化酶中氧化的“就绪”状态Ni_r的活性位点。 EPR的磁场依赖性用于通过逐步穿过EPR包膜来选择有助于ENDOR响应的分子的特定子集。在整个磁场范围内,可以清楚地遵循三个超精细耦合。 H1和H2这两个质子分别显示出非常相似的12.5和12.6 MHz的大各向同性耦合。它们的偶极耦合很小(分别为2.1和1.4 MHz)。第三个质子H3表现出0.5 MHz的小的各向同性耦合和3.5 MHz的较大的各向异性贡献。基于与从Desulfovibrio gigas和D. vulgaris的加氢酶单晶的X射线晶体学获得的结构数据进行比较,以及已知的Ni_r的g张量取向,可以实现〜1H超精细偶联的分配。 H1和H2被分配给桥接的半胱氨酸Cys533的#beta#-CH_2质子,H3可以属于Cys68的#beta#-CH_2质子或Cys68或Cys530的质子化半胱氨酸(-SH)。

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