Paulsen K E, Orville A M, Frerman F E, Lipscomb J D, Stankovich M T
Department of Chemistry, University of Minnesota, Minneapolis 55455.
Biochemistry. 1992 Dec 1;31(47):11755-61. doi: 10.1021/bi00162a012.
We have determined the formal potential values for each electron transfer to electron transfer flavoprotein-ubiquinone oxidoreductase (ETF-QO), in order to further characterize the thermodynamics of electron transport from various acyl-CoA thioesters to the mitochondrial ubiquinone pool. ETF-QO contains one [4Fe-4S]2+,1+ cluster and one FAD prosthetic group. A preliminary visible-spectroelectrochemical titration showed that the two redox centers were reduced almost simultaneously. Since the visible spectra of the chromophores overlap, it was not possible to resolve the formal potential value for each electron transfer to the protein using this method. Accordingly, an EPR-spectroelectrochemical cell was designed so that each formal potential value could be resolved by EPR quantitation of the flavin semiquinone and the reduced iron-sulfur cluster during the titration. The formal potential values for electron transfer to ETF-ubiquinone oxidoreductase at pH 7.5 and 4 degrees C were E1 degrees' = +0.028 V and E2 degrees' = -0.006 V for the first and second electron transfers, respectively, to the FAD and E degrees' = +0.047 V for the iron-sulfur cluster. The thermodynamics of electron transport from the acyl-CoA substrates of beta-oxidation to the mitochondrial electron transport chain have been fully resolved with completion of this work. The results are discussed in terms of their significance to the overall electron transport process from beta-oxidation.
我们已经确定了每次电子转移至电子转移黄素蛋白-泛醌氧化还原酶(ETF-QO)的形式电位值,以便进一步表征从各种酰基辅酶A硫酯到线粒体泛醌池的电子传递热力学。ETF-QO包含一个[4Fe-4S]2 +,1 +簇和一个FAD辅基。初步的可见光谱电化学滴定表明,两个氧化还原中心几乎同时被还原。由于发色团的可见光谱重叠,因此无法使用此方法解析每次向该蛋白质进行电子转移的形式电位值。因此,设计了一个EPR光谱电化学池,以便在滴定过程中通过黄素半醌和还原的铁硫簇的EPR定量来解析每个形式电位值。在pH 7.5和4℃下,向ETF-泛醌氧化还原酶进行电子转移的形式电位值,对于向FAD的第一次和第二次电子转移分别为E1°' = + 0.028 V和E2°' = - 0.006 V,对于铁硫簇E°' = + 0.047 V。随着这项工作的完成,从β-氧化的酰基辅酶A底物到线粒体电子传递链的电子传递热力学已得到充分解析。根据它们对β-氧化整体电子传递过程的重要性对结果进行了讨论。