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硫酸盐限制生长对产朊假丝酵母中还原型烟酰胺腺嘌呤二核苷酸与细胞色素之间线粒体电子传递和能量守恒的影响。

Effect of sulphate-limited growth on mitochondrial electron transfer and energy conservation between reduced nicotinamide-adenine dinucleotide and the cytochromes in Torulopsis utilis.

作者信息

Haddock B A, Garland P B

出版信息

Biochem J. 1971 Aug;124(1):155-70. doi: 10.1042/bj1240155.

Abstract
  1. Conditions have been established for the sulphate-limited growth of Torulopsis utilis in continuous culture. 2. Mitochondria prepared from sulphate-limited cells lack both piericidin A sensitivity and the first energy-conservation site (site 1). Sensitivity to antimycin A or cyanide and the second and third energy-conservation sites were apparently unaffected by sulphate-limited growth. 3. Aerobic incubation for 8h of sulphate-limited cells with a low concentration of sulphate (50mum or less) resulted in the recovery of mitochondrial piericidin A sensitivity and site 1. The use of higher concentrations of sulphate (250mum or more) still resulted in the recovery of mitochondrial piericidin A sensitivity and site 1, but also resulted in the appearance of a non-phosphorylating oxidase, which mediated oxidation of the respiratory chain at about the level of cytochrome b in an antimycin A- and cyanide-insensitive manner. Both this alternative route and the conventional normal route of respiration were shown to coexist and to intercommunicate at the level of cytochrome b. 4. Low-temperature spectroscopy failed to identify any new respiratory component to explain the alternative route. 5. The apparent affinity of the alternative route for oxygen was similar to that for the conventional route through cytochrome oxidase, namely half-maximal activity at 0.1mum-oxygen or less. 6. The non-haem iron concentration of submitochondrial particles was unaffected by sulphate limitation, whereas the acid-labile sulphide concentration was lowered tenfold. Marked increases (between four- and 30-fold) in the acid-labile sulphide concentration of submitochondrial particles were observed in sulphate-limited cells after aerobic incubation with various concentrations of sulphate. The lowest increase (fourfold) was observed without added sulphate, the highest (30-fold) with 1.0mm added sulphate. 7. The ratio of non-haem iron to acid-labile sulphide in submitochondrial particles varied with different growth conditions from a maximum of 15.0 to a minimum of 0.72. It is suggested that analytical measurements of non-haem iron are an inadequate guide to the concentration of iron-sulphur protein in complex systems. 8. The effects of sulphate-limited growth on site 1 and piericidin sensitivity are interpreted to indicate a role for iron-sulphur protein in these properties. 9. The aerobic incubation of sulphate-limited cells with cycloheximide resulted in the recovery by mitochondria of site 1 but not of piericidin sensitivity. 10. The appearance of the alternative route for cyanide- and antimycin-A (but not piericidin A-) insensitive respiration on incubating sulphate-limited cells with sulphate concentrations higher than 250mum indicates that the alternative route involves an iron-sulphur protein.
摘要
  1. 已确定了产朊假丝酵母在连续培养中硫酸盐限制生长的条件。2. 从硫酸盐限制细胞制备的线粒体既缺乏对杀稻瘟菌素A的敏感性,也缺乏第一个能量保存位点(位点1)。对抗霉素A或氰化物的敏感性以及第二和第三个能量保存位点显然不受硫酸盐限制生长的影响。3. 用低浓度硫酸盐(50μM或更低)对硫酸盐限制细胞进行8小时的有氧孵育,导致线粒体对杀稻瘟菌素A的敏感性和位点1恢复。使用较高浓度的硫酸盐(250μM或更高)仍导致线粒体对杀稻瘟菌素A的敏感性和位点1恢复,但也导致出现一种非磷酸化氧化酶,该酶以抗霉素A和氰化物不敏感的方式在细胞色素b水平介导呼吸链的氧化。已证明这条替代途径和传统的正常呼吸途径在细胞色素b水平共存并相互连通。4. 低温光谱未能鉴定出任何新的呼吸成分来解释替代途径。5. 替代途径对氧气的表观亲和力与通过细胞色素氧化酶的传统途径相似,即在0.1μM氧气或更低浓度下达到最大活性的一半。6. 亚线粒体颗粒的非血红素铁浓度不受硫酸盐限制的影响,而酸不稳定硫化物浓度降低了10倍。在用各种浓度的硫酸盐对硫酸盐限制细胞进行有氧孵育后,观察到亚线粒体颗粒的酸不稳定硫化物浓度显著增加(4至30倍)。在不添加硫酸盐的情况下观察到最低增加(4倍),在添加1.0mM硫酸盐的情况下观察到最高增加(30倍)。7. 亚线粒体颗粒中非血红素铁与酸不稳定硫化物的比例随不同生长条件而变化,从最大值15.0到最小值0.72。有人认为,在复杂系统中,对非血红素铁的分析测量不足以指导铁硫蛋白的浓度。8. 硫酸盐限制生长对位点1和杀稻瘟菌素敏感性的影响被解释为表明铁硫蛋白在这些特性中起作用。9. 用放线菌酮对硫酸盐限制细胞进行有氧孵育,导致线粒体恢复位点1,但未恢复杀稻瘟菌素敏感性。10. 在用高于250μM的硫酸盐浓度孵育硫酸盐限制细胞时,出现对氰化物和抗霉素A(但不对杀稻瘟菌素A)不敏感的呼吸替代途径,这表明替代途径涉及一种铁硫蛋白。

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