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[不同黄素生成水平的季也蒙毕赤酵母的呼吸系统]

[Respiratory system of Pichia guilliermondii yeasts with different levels of flavinogenesis].

作者信息

Zviagil'skaia R A, Fedorovich D V, Shavlovskiĭ G M

出版信息

Mikrobiologiia. 1978 Nov-Dec;47(6):975-84.

PMID:745565
Abstract

The yeast Pichia guilliermondii was grown on media with different content of iron and its respiration system was studied. When the yeast was cultivated on a complete medium, its respiratory chain operated at the maximum rate in the exponential growth phase, i. e. all the three points of phosphorylation were involved; cytochrome oxidase was the only terminal oxidase. When the growth was decelerated and at the stationary phase, the alternative autooxidable cyanide-resistant pathway inhibited with salicyl hydroxamate partly functioned. Iron deficiency in the medium resulted in a two-three-fold decrease in the content of total and non-hemin iron in the cells, changes in the character and rate of growth, a decrease in the biomass yield, a high rate of flavinogenesis, a slight decrease in the respiration activity, though no drastic changes in the respiration system occurred. This system is represented, as in the case of cells grown on a complete medium, by a typical cytochrome system and an alternative autooxidable pathway. The absence of principal differences in the respiration systems of normal and iron-deficient cells, as well as the operation of the first point of coupling in flavinogenic cells, makes it doubtful that Fenh-proteins of the first segment of the respiratory chain are involved in the regulation of flavinogenesis.

摘要

将季也蒙毕赤酵母培养在铁含量不同的培养基上,并对其呼吸系统进行了研究。当酵母在完全培养基上培养时,其呼吸链在指数生长期以最大速率运行,即三个磷酸化位点均参与其中;细胞色素氧化酶是唯一的末端氧化酶。当生长减速并处于稳定期时,被水杨羟肟酸抑制的交替的可自动氧化的抗氰途径部分发挥作用。培养基中铁缺乏导致细胞中总铁和非血红素铁含量降低两到三倍,生长特性和速率发生变化,生物量产量下降,黄素生成速率升高,呼吸活性略有下降,不过呼吸系统未发生剧烈变化。与在完全培养基上生长的细胞一样,该系统由典型的细胞色素系统和交替的可自动氧化途径组成。正常细胞和缺铁细胞的呼吸系统没有主要差异,以及黄素生成细胞中第一个偶联点的运行,使得呼吸链第一段的Fenh蛋白是否参与黄素生成的调节令人怀疑。

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