Shin W, Lindahl P A
Department of Chemistry, Texas A&M University, College Station 77843.
Biochemistry. 1992 Dec 29;31(51):12870-5. doi: 10.1021/bi00166a023.
Adding 1,10-phenanthroline to carbon monoxide dehydrogenase from Clostridium thermoaceticum results in the complete loss of the NiFeC EPR signal and the CO/acetyl-CoA exchange activity. Other EPR signals characteristic of the enzyme (the gav = 1.94 and gav = 1.86 signals) and the CO oxidation activity are completely unaffected by the 1,10-phenanthroline treatment. This indicates that there are two catalytic sites on the enzyme; the NiFe complex is required for catalyzing the exchange and acetyl-CoA synthase reactions, while some other site is responsible for CO oxidation. The strength of CO binding to the NiFe complex was examined by titrating dithionite-reduced enzyme with CO. During the titration, the NiFeC EPR signal developed to a final spin intensity of 0.23 spin/alpha beta. The resulting CO titration curve (NiFeC spins/alpha beta vs CO pha beta) was fitted using two reactions: binding of CO to the oxidized NiFe complex, and reduction of the CO-bound species to a form that exhibits the NiFeC signal. Best fits yielded apparent binding constants between 6000 and 14,000 M-1 (Kd = 70-165 microM). This sizable range is due to uncertainty whether CO binds to all or only a small fraction (approximately 23%) of the NiFe complexes. Reduction of the CO-bound NiFe complex is apparently required to activate it for catalysis. The electron used for this reduction originates from the CO oxidation site, suggesting that delivery of a low-potential electron to the CO-bound NiFe complex is the physiological function of the CO oxidation reaction catalyzed by this enzyme.
向来自热醋梭菌的一氧化碳脱氢酶中添加1,10 - 菲咯啉会导致NiFeC电子顺磁共振(EPR)信号和CO/乙酰辅酶A交换活性完全丧失。该酶的其他特征性EPR信号(gav = 1.94和gav = 1.86信号)以及CO氧化活性完全不受1,10 - 菲咯啉处理的影响。这表明该酶上存在两个催化位点;NiFe复合物是催化交换和乙酰辅酶A合成酶反应所必需的,而其他一些位点负责CO氧化。通过用CO滴定连二亚硫酸盐还原的酶来检测CO与NiFe复合物的结合强度。在滴定过程中,NiFeC EPR信号发展到最终自旋强度为0.23自旋/αβ。所得的CO滴定曲线(NiFeC自旋/αβ对CO phaβ)使用两个反应进行拟合:CO与氧化态NiFe复合物的结合,以及将CO结合的物种还原为呈现NiFeC信号的形式。最佳拟合得到的表观结合常数在6000至14000 M-1之间(Kd = 70 - 165 microM)。这个相当大的范围是由于不确定CO是与所有NiFe复合物结合还是仅与一小部分(约23%)结合。显然需要还原CO结合的NiFe复合物以激活其催化作用。用于这种还原的电子源自CO氧化位点,这表明向CO结合的NiFe复合物传递低电位电子是该酶催化的CO氧化反应的生理功能。