Drabikowska A, Kosmakos F C, Brodie A F
J Bacteriol. 1974 Feb;117(2):733-40. doi: 10.1128/jb.117.2.733-740.1974.
Oxidative phosphorylation has been demonstrated with mitochondria of the mi-1 respiratory mutant of Neurospora crassa. The P/O ratios observed with these mitochondria were approximately 0.8 with citrate and 0.4 with either externally added reduced nicotinamide adenine dinucleotide (NADH), succinate, or ascorbate-tetramethyl-p-phenylenediamine (TPD). These P/O ratios suggest that there are only two sites of phosphorylation in mitochondria isolated from young (20 to 24 h) cultures of the mi-1 mutant. The energy-dependent reduction of NAD(+) with succinate and the phosphorylation associated with ascorbate-TPD oxidation indicate that the first and the third sites of energy coupling are present in this mutant. Difference spectra of mitochondria from young cultures of the mi-1 mutant revealed the presence of cytochrome c. Cytochromes b and a + a(3) were not detected. However, in the presence of antimycin A, a small peak in the Soret region at 430 nm was observed. A carbon monoxide difference spectrum revealed the presence of a component of the respiratory chain with a spectrum similar to that of cytochrome o. It is of interest that respiratory inhibitors such as antimycin A, 2-n-nonylhydroxyquinoline N-oxide, and cyanide abolished phosphorylation but only partially inhibited oxidation. It is postulated that the mi-1 respiratory system contains two pathways of electron transport-the first is associated with a phosphorylating pathway, whereas the second is a non-phosphorylating electron transport pathway.
粗糙脉孢菌的mi-1呼吸突变体的线粒体已被证明具有氧化磷酸化作用。用这些线粒体观察到的P/O比值,以柠檬酸盐为底物时约为0.8,以外加还原型烟酰胺腺嘌呤二核苷酸(NADH)、琥珀酸盐或抗坏血酸-四甲基对苯二胺(TPD)为底物时约为0.4。这些P/O比值表明,从mi-1突变体的年轻(20至24小时)培养物中分离出的线粒体中只有两个磷酸化位点。琥珀酸盐使NAD(+)发生能量依赖性还原以及与抗坏血酸-TPD氧化相关的磷酸化表明,该突变体中存在能量偶联的第一和第三位点。mi-1突变体年轻培养物的线粒体的差光谱显示存在细胞色素c。未检测到细胞色素b和a + a(3)。然而,在抗霉素A存在的情况下,在430nm的索雷特区域观察到一个小峰。一氧化碳差光谱显示存在一种呼吸链成分,其光谱与细胞色素o的光谱相似。有趣的是,抗霉素A、2-正壬基羟基喹啉N-氧化物和氰化物等呼吸抑制剂消除了磷酸化,但仅部分抑制了氧化。据推测,mi-1呼吸系统包含两条电子传递途径——第一条与磷酸化途径相关,而第二条是不发生磷酸化的电子传递途径。