Schwitzguébel J P, Palmer J M
J Bacteriol. 1982 Feb;149(2):612-9. doi: 10.1128/jb.149.2.612-619.1982.
The oxidative and phosphorylative properties of mitochondria isolated from Neurospora crassa were investigated as a function of growth stage. The rates of oxidation of exogenous NADH and NADPH varied independently of each other, thus ruling out the existence of only one unspecific dehydrogenase. Two different pathways were involved in the oxidation of NAD-linked substrates, as indicated by changes in the rate of oxygen uptake, the sensitivity to rotenone, and the efficiency of phosphorylation. One pathway was sensitive to rotenone and involved three energy-coupling sites, whereas the other was resistant to rotenone and bypassed complex I. Our results indicated that the activity of complex I of the respiratory chain increased markedly in the late exponential phase of growth, remained high in the stationary phase, and then decreased when conidiae were formed. In contrast, the activity of the rotenone-resistant bypass was maximal in the early exponential phase. With malate (plus glutamate) as a substrate, the sensitivity to rotenone and the ADP/O ratios were always lower than those observed with other NAD-linked substrates, suggesting a possible cooperation between malate dehydrogenase and the rotenone-resistant pathway. The rate of oxygen uptake measured in the presence of rotenone was significantly increased by the addition of exogenous NAD+, suggesting that added NAD+ could interact with the rotenone-resistant bypass.
研究了从粗糙脉孢菌中分离出的线粒体的氧化和磷酸化特性与生长阶段的关系。外源NADH和NADPH的氧化速率相互独立变化,从而排除了仅存在一种非特异性脱氢酶的可能性。NAD连接底物的氧化涉及两条不同的途径,这可通过氧气摄取速率的变化、对鱼藤酮的敏感性以及磷酸化效率来表明。一条途径对鱼藤酮敏感,涉及三个能量偶联位点,而另一条途径对鱼藤酮有抗性,绕过了复合体I。我们的结果表明,呼吸链复合体I的活性在生长的指数后期显著增加,在稳定期保持较高水平,然后在分生孢子形成时下降。相反,对鱼藤酮有抗性的旁路活性在指数前期最大。以苹果酸(加谷氨酸)作为底物时,对鱼藤酮的敏感性和ADP/O比值总是低于用其他NAD连接底物时观察到的值,这表明苹果酸脱氢酶与对鱼藤酮有抗性的途径之间可能存在协同作用。在鱼藤酮存在下测量的氧气摄取速率通过添加外源NAD+而显著增加,这表明添加的NAD+可与对鱼藤酮有抗性的旁路相互作用。