首页> 外文期刊>Journal of the American Chemical Society >RAMAN AND INFRARED SPECTROSCOPY OF CYANIDE-INHIBITED CO DEHYDROGENASE/ACETYL-COA SYNTHASE FROM CLOSTRIDIUM THERMOACETICUM - EVIDENCE FOR BIMETALLIC ENZYMATIC CO OXIDATION
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RAMAN AND INFRARED SPECTROSCOPY OF CYANIDE-INHIBITED CO DEHYDROGENASE/ACETYL-COA SYNTHASE FROM CLOSTRIDIUM THERMOACETICUM - EVIDENCE FOR BIMETALLIC ENZYMATIC CO OXIDATION

机译:嗜热梭状芽孢杆菌的氰化物抑制的CO脱氢酶/乙醛-COA合酶的拉曼光谱和红外光谱-双金属酶CO氧化的证据

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摘要

Clostridium thermoaceticum and other autotrophic anaerobic bacteria contain a bifunctional enzyme, carbon monoxide dehydrogenase/acetyl-CoA synthase (CODH/ACS), that catalyzes two reactions of CO at two separate Ni-FeS clusters. Oxidation of CO to CO2 is catalyzed by Cluster C, while incorporation of CO into acetyl-CoA occurs at Cluster A. In this study, resonance Raman [RR] and infrared [IR] spectroscopy are applied to the adduct of Cluster C with cyanide, a selective inhibitor of CO oxidation. The RR spectra reveal that CN- binds simultaneously to Fe and Ni, because bands whose C-13 and N-15 shifts identify them as cyanide-metal stretching and bending modes are sensitive to incorporation of both Fe-54 and Ni-64 into the enzyme. The IR spectrum reveals a low frequency, 2037 cm(-1), for the C-N stretch, indicative of Fe-II binding via the C end. Vibrational modeling of the frequencies and isotope shifts indicates a bent Fe-CN-Ni bridging geometry, with a similar to 140 degrees C-N-Ni angle. This geometry of the inhibitory adduct suggests that CO oxidation involves a bimetallic mechanism. It is proposed that pre-organization of the metal ions by the enzyme promotes CO oxidation by Ni-II-OH- attack on Fe-II-CO, followed by Ni-FeS reduction as CO2 is released. This chemistry is analogous to the metal-catalyzed water-gas shift reaction.
机译:热乙酸梭菌和其他自养厌氧细菌包含双功能酶一氧化碳脱氢酶/乙酰辅酶A合酶(CODH / ACS),可在两个单独的Ni-FeS簇上催化CO的两个反应。簇C催化CO氧化为CO2,而簇A发生CO掺入乙酰辅酶A的过程。在这项研究中,共振拉曼[RR]和红外[IR]光谱应用于簇C与氰化物的加合物,一氧化碳的选择性抑制剂。 RR光谱表明,CN-同时与Fe和Ni结合,因为C-13和N-15位移的带将其标识为氰化物金属的拉伸和弯曲模式对将Fe-54和Ni-64都掺入其中非常敏感。酶。红外光谱显示C-N延伸的低频2037 cm(-1),表明Fe-II通过C端结合。频率和同位素位移的振动建模表明,Fe-CN-Ni桥接几何形状弯曲,类似于140度C-N-Ni角。抑制性加合物的这种几何结构表明,CO氧化涉及双金属机理。有人提出,通过酶的金属离子的预组织可促进Ni-II-OH侵袭Fe-II-CO的一氧化碳,然后释放出CO2还原Ni-FeS。这种化学反应类似于金属催化的水煤气变换反应。

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