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基因和生理操作对酿酒酵母和产朊假丝酵母中腺嘌呤核苷酸转位酶动力学及结合参数的影响。

Effect of genetic and physiological manipulations onthe kinetic and binding parameters of the adenine nucleotide translocator in Saccharomyces cervisiae and Candida utilis.

作者信息

Lauquin G, Lunardi J, Vignais P V

出版信息

Biochimie. 1976;58(10):1213-20. doi: 10.1016/s0300-9084(76)80120-4.

Abstract
  1. Ghe kinetic and binding parameters of adenine-nucleotide transport have been studied in mitochondria isolated from yeast cells in which the mitochondrial protein-synthetizing system had been inhibited by growth in the presence of erythromycin. These parameters have also been studied in promitochondria isolated from yeast grown in anaerobiosis aesence of ethidium bromide results in a loss of cytochromes b, alpha and alpha 3, but it does not affect the rate constant of ADP transport in isolated mitochondria, nor the number of binding sites for atractyloside, bongkrekic acid and ADP. 3. Promitochondria from S. cerevisiae grown in anaerobiosis, mitochondria from a qo mutant (qo mitochondria) and mitochondria from S. cerevisiae grown in the presence of erythromycin (ERY-mitochondria) are able to transport ADP by the same exchange-diffusion mechanism, sensitive to carboxy-atractyloside, and with the same rate constant as the wild type mitochondria. Promitochondria, qo mitochondria and ERY-mitochondria bind atractyloside, bongkrekic acid and ADP with the same high affinity as the wild type mitochondria. They only differ from the wild type mitochondria by a lower number of binding sites for ADP and for specific inhibitors of ADP transport. 4. Mitochondria isolated from the nuclear mutant p9 of S. cerevisae, called also op1, are characterized by a much lower affinity for bongkrekic acid than mitochondria from the wild type (20 times less). 5. Manipulation of the fatty acid composition of the mitochondrial membranes in the desaturase auxotroph mutant KD115 does not modify the number of sites, no their affinity of bongkrekic acid. 6. The above results are interpreted to mean that the structure and function of the mitochondrial adN translocator are not affected by any change in the mitochondrial protein synthetizing system.
摘要
  1. 已对从酵母细胞分离的线粒体中腺嘌呤核苷酸转运的动力学和结合参数进行了研究,在这些酵母细胞中,线粒体蛋白质合成系统因在红霉素存在下生长而受到抑制。还对从在厌氧条件下生长的酵母中分离的前线粒体进行了这些参数的研究。溴化乙锭的存在会导致细胞色素b、α和α3的丧失,但它不影响分离线粒体中ADP转运的速率常数,也不影响对苍术苷、邦克雷酸和ADP的结合位点数量。3. 在厌氧条件下生长的酿酒酵母的前线粒体、qo突变体(qo线粒体)的线粒体和在红霉素存在下生长的酿酒酵母的线粒体(ERY线粒体)能够通过相同的交换扩散机制转运ADP,对羧基苍术苷敏感,并且具有与野生型线粒体相同的速率常数。前线粒体、qo线粒体和ERY线粒体与野生型线粒体一样,以相同的高亲和力结合苍术苷、邦克雷酸和ADP。它们与野生型线粒体的唯一区别在于ADP和ADP转运特异性抑制剂的结合位点数量较少。4. 从酿酒酵母的核突变体p9(也称为op1)分离的线粒体对邦克雷酸的亲和力比野生型线粒体低得多(低20倍)。5. 在去饱和酶营养缺陷型突变体KD115中线粒体膜脂肪酸组成的操作不会改变位点数量,也不会改变它们对邦克雷酸的亲和力。6. 上述结果被解释为意味着线粒体adN转运体的结构和功能不受线粒体蛋白质合成系统任何变化的影响。

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