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Voltammetric studies of bidirectional catalytic electron transport in Escherichia coli succinate dehydrogenase: comparison with the enzyme from beef heart mitochondria.

机译:伏安法研究大肠杆菌琥珀酸脱氢酶中的双向催化电子传输:与来自牛肉心线粒体的酶的比较。

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摘要

The succinate dehydrogenases (SDH: soluble, membrane-extrinsic subunits of succinate:quinone oxidoreductases) from Escherichia coli and beef heart mitochondria each adsorb at a pyrolytic graphite 'edge' electrode and catalyse the interconversion of succinate and fumarate according to the electrochemical potential that is applied. E. coli and beef heart mitochondrial SDH share only ca. 50% homology, yet the steady-state catalytic activities, when measured over a continuous potential range, display very similar catalytic operating potentials and energetic biases (the relative ability to catalyse succinate oxidation vs. fumarate reduction). Importantly, E. coli SDH also exhibits the interesting 'tunnel-diode' behaviour previously reported for the mitochondrial enzyme. Thus as the potential is lowered below ca. -60 mV (pH 7, 38 degrees C) the rate of catalytic fumarate reduction decreases abruptly despite an increase in driving force. Since the homology relates primarily to residues associated with active site regions, the marked similarity in the voltammetry reaffirms our previous conclusions that the tunnel-diode behaviour is a characteristic property of the enzyme active site. Thus, succinate dehydrogenase is an excellent fumarate reductase, but its activity in this direction is limited to a very specific range of potential.
机译:来自大肠杆菌和牛肉心线粒体的琥珀酸脱氢酶(SDH:琥珀酸的可溶性膜外源亚单位:醌氧化还原酶)分别吸附在热解石墨“边缘”电极上,并根据电化学势催化琥珀酸和富马酸酯的相互转化。应用。大肠杆菌和牛肉心线粒体SDH仅约占在连续电势范围内测量时,具有50%的同源性,但稳态催化活性显示出非常相似的催化操作电势和高能偏差(催化琥珀酸氧化与富马酸酯还原的相对能力)。重要的是,大肠杆菌SDH还表现出先前报道的线粒体酶有趣的“隧道二极管”行为。因此,随着电势降低到低于ca。 -60 mV(pH 7,38摄氏度)时,尽管驱动力增加,但富马酸酯的催化还原速率却突然降低。由于同源性主要涉及与活性位点区域相关的残基,因此伏安法中的显着相似性再次证实了我们先前的结论,即隧道二极管的行为是酶活性位点的特征。因此,琥珀酸脱氢酶是极好的富马酸还原酶,但是其在该方向上的活性被限制在非常特定的电位范围内。

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