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Spectroscopic studies of flavoproteins and non-haem iron proteins of submitochondrial particles of Torulopsis utilis modified by iron- and sulphate-limited growth in continuous culture

机译:连续培养中铁和硫酸盐限制的生长修饰的乌submit线粒体颗粒的黄素蛋白和非血红素铁蛋白的光谱研究

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摘要

1. A spectroscopic resolution has been made of the components contributing to the `iron-flavoprotein' trough extending from 450 to 520nm in the reduced-minus-oxidized difference spectrum of submitochondrial particles of Torulopsis utilis. 2. Seven components were identified other than cytochrome b, ubiquinone and succinate dehydrogenase. On the basis of the effects of iron- and sulphate-limited growth of cells on their subsequently derived electron-transport particles, and also by consideration of analytical measurements of the concentration of FMN, FAD, non-haem iron and acid-labile sulphide in the electron-transport particles in relation to the magnitude of the spectroscopic changes, it was possible to identify five of these components as follows: species 1a, the flavin of NADH dehydrogenase ferroflavoprotein; species 1b, the iron–sulphur component of NADH dehydrogenase ferroflavoprotein; species 1′, the flavin of an NADPH dehydrogenase; species 2, an iron–sulphur or ferroflavoprotein component; species 3, the flavin of l-3-glycerophosphate dehydrogenase. Two additional components were a fluorescent flavoprotein, probably lipoamide dehydrogenase, and a b-type cytochrome reducible by NADH or NADPH but not reoxidizable by the respiratory chain. 3. Species 1b and 2 were undetectable in electron-transport particles from iron- or sulphate-limited cells, but could be recovered in vivo under non-growing conditions. 4. The recovery in vivo of species 2 but not species 1b was inhibited by cycloheximide. 5. The recovery of species 1b correlates with the recovery of site 1 conservation. 6. The recovery of species 1b with species 2 correlates with the recovery of piericidin A sensitivity. 7. Evidence is presented for an NADPH dehydrogenase distinct from NADH dehydrogenase. The oxidation of NADH and NADPH by the respiratory chain is sensitive to piericidin A, and an iron–sulphur protein common to both pathways (species 2) is suggested as the piericidin A-sensitive component. 8. The approximate E′0 (pH7.0) values of species 1 (a and b, low potential) and species 2 (high potential) indicate that site 1 energy conservation occurs between the levels of species 1 (a and b) and species 2.
机译:1.在鱼的线粒体颗粒的减负氧化差异光谱中,对导致“铁黄素蛋白”波谷从450延伸至520nm的成分进行了光谱解析。 2.除了细胞色素b,泛醌和琥珀酸脱氢酶以外,还鉴定了7种成分。根据铁和硫酸盐限制的细胞生长对其随后衍生的电子传输粒子的影响,并考虑分析测量中FMN,FAD,非血红素铁和酸不稳定的硫化物的浓度与光谱变化幅度有关的电子传输粒子,可以确定以下五个成分:种类1a,NADH脱氢酶黄素铁蛋白的黄素;物种1b,NADH脱氢酶铁黄素蛋白的铁硫成分;物种1',NADPH脱氢酶的黄素;种类2,铁硫或铁黄素蛋白成分;种类3,L-3-甘油磷酸脱氢酶的黄素。另外两个成分是荧光黄素蛋白(可能是脂酰胺脱氢酶)和可被NADH或NADPH还原但不能被呼吸链还原的b型细胞色素。 3.物种1b和2在铁或硫酸盐受限细胞的电子传输颗粒中无法检测到,但可以在非生长条件下在体内回收。 4.环己酰亚胺抑制了物种2的体内恢复,但物种1b却没有。 5.物种1b的恢复与站点1保护的恢复相关。 6.物种1b和物种2的回收与皮利菌素A敏感性的回收相关。 7.提供了与NADH脱氢酶不同的NADPH脱氢酶的证据。呼吸链对NADH和NADPH的氧化作用对pilicidin A敏感,建议将这两种途径(物种2)共有的铁硫蛋白作为pircididin A敏感成分。 8.物种1(a和b,低电势)和物种2(高电势)的近似E'0(pH7.0)值表明,站点1的节能发生在物种1(a和b)和物种1的水平之间。种类2。

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