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产朊假丝酵母线粒体中,非血红素铁与抗霉素A敏感性从位点1能量守恒的解离

Non-haem iron and the dissociation of piericidin A sensitivity from site 1 energy conservation in mitochondria from Torulopsis utilis.

作者信息

Clegg R A, Garland P B

出版信息

Biochem J. 1971 Aug;124(1):135-51. doi: 10.1042/bj1240135.

Abstract
  1. The aerobic incubation of iron-deficient Torulopsis utilis cells for 12h under non-growing conditions results in the recovery by mitochondria of the previously absent site 1 energy conservation and sensitivity to piericidin A. 2. The recovery of piericidin A sensitivity but not site 1 is prevented by the presence of cycloheximide (100mug/ml) in the medium used for aerobic incubation of the cells. Rotenone sensitivity behaved similarly. 3. Chloramphenicol, erythromycin and tetracycline were without effect on the recovery of site 1 and piericidin A sensitivity. 4. Inclusion of (59)Fe in the growth medium can be used as the basis for a highly sensitive assay for non-haem iron. 5. Iron-limited growth of T. utilis lowers the concentration of both non-haem iron and acid-labile sulphide of submitochondrial particles by over 20-fold compared with the ;normal' situation with iron-supplemented glycerol-limited growth. 6. Increases in the non-haem iron and acid-labile sulphide concentrations of submitochondrial particles occur when site 1 and piericidin A sensitivity are recovered. The increase is approximately halved by the presence of cycloheximide. 7. The non-haem iron of T. utilis submitochondrial particles does not exchange with added iron. 8. Continuous culture of T. utilis at the transition between glycerol- and iron-limitation results in cells where mitochondria possess site 1 energy conservation but lack piericidin A sensitivity. 8. It is concluded, in contrast with widely held views to the opposite, that energy conservation at site 1 does not require electron flow to proceed through a piericidin A- or rotenone-sensitive route. 9. Restriction of the iron supplied to growing T. utilis to a concentration just above that required for growth limitation demonstrates that a 10- to 20-fold decrease of the ;normal' non-haem iron concentration of both cells and mitochondria is without effect on the growth yield per unit of carbon source. Submitochondrial particles prepared from such iron-restricted but otherwise functionally normal cells have a non-haem iron concentration of about 0.5-0.8ng-atom/mg of protein. It is concluded that the concentration of iron-sulphur protein required for normal function by the respiratory chain is close to the concentrations of cytochromes and flavoproteins.
摘要
  1. 在非生长条件下,缺铁的产朊假丝酵母细胞需氧培养12小时,可使线粒体恢复先前不存在的位点1能量保存功能以及对杀粉蝶菌素A的敏感性。

  2. 在用于细胞需氧培养的培养基中加入放线菌酮(100μg/ml)可阻止杀粉蝶菌素A敏感性的恢复,但不能阻止位点1的恢复。鱼藤酮敏感性表现类似。

  3. 氯霉素、红霉素和四环素对位点1的恢复及杀粉蝶菌素A敏感性均无影响。

  4. 在生长培养基中加入(59)铁可作为非血红素铁高灵敏度测定的基础。

  5. 与铁补充甘油限制生长的“正常”情况相比,产朊假丝酵母的铁限制生长使亚线粒体颗粒的非血红素铁和酸不稳定硫化物浓度降低20倍以上。

  6. 当恢复位点1和杀粉蝶菌素A敏感性时,亚线粒体颗粒的非血红素铁和酸不稳定硫化物浓度增加。放线菌酮的存在使增加量约减半。

  7. 产朊假丝酵母亚线粒体颗粒的非血红素铁不与添加的铁交换。

  8. 在甘油限制和铁限制之间的过渡阶段对产朊假丝酵母进行连续培养,得到的细胞中线粒体具有位点1能量保存功能,但缺乏杀粉蝶菌素A敏感性。

  9. 与普遍持有的相反观点不同,得出的结论是,位点1的能量保存不需要电子流通过杀粉蝶菌素A或鱼藤酮敏感途径进行。

  10. 将供给生长中的产朊假丝酵母的铁限制在略高于生长限制所需的浓度,结果表明,细胞和线粒体的“正常”非血红素铁浓度降低10至20倍对单位碳源的生长产量没有影响。从这种铁限制但功能正常的细胞制备的亚线粒体颗粒的非血红素铁浓度约为0.5 - 0.8 ng原子/毫克蛋白质。得出的结论是,呼吸链正常功能所需的铁硫蛋白浓度接近细胞色素和黄素蛋白的浓度。

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Studies on the origin of yeast mitochondria.酵母线粒体起源的研究。
J Cell Biol. 1962 May;13(2):345-50. doi: 10.1083/jcb.13.2.345.
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SPECTROCHEMICAL ANALYSIS OF INORGANIC ELEMENTS IN BACTERIA.细菌中无机元素的光谱化学分析
J Bacteriol. 1964 Dec;88(6):1545-9. doi: 10.1128/jb.88.6.1545-1549.1964.
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PREPARATION OF YEAST MITOCHONDRIA BY AN ENZYMATIC PROCEDURE.通过酶法制备酵母线粒体
J Biochem. 1964 Nov;56:484-6. doi: 10.1093/oxfordjournals.jbchem.a128022.

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