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酿酒酵母温度敏感型细胞分裂周期突变体中线粒体生物合成减少。

Decreased mitochondrial biogenesis in temperature-sensitive cell division cycle mutants of Saccharomyces cerevisiae.

作者信息

Genta H D, Mónaco M E, Aon M A

机构信息

Departamento de Bioquímica de la Nutrición, Universidad Nacional de Tucumán, Argentina.

出版信息

Curr Microbiol. 1995 Dec;31(6):327-31. doi: 10.1007/BF00294693.

DOI:10.1007/BF00294693
PMID:8528003
Abstract

The temperature-sensitive cell division cycle (cdc) G1 mutants cdc28 and cdc35 show decreased mitochondrial volumes with respect to the wild type strain A364A (WT) at the restrictive temperature. Of the three criteria of mitochondrial biogenesis studied, that is, number of mitochondria per cell, relative area of the cell occupied by mitochondria, or relative area of mitochondria occupied by inner membranes, only the second indicator was significantly lower in cdc mutants than in the WT. The mitochondrial inner membranes development did not compensate for the decrease in the organelles volume. Apparently, the reduced mitochondrial biogenesis was not due to the temperature shift because the relative area of the cell occupied by mitochondria was already significantly lower at 25 degrees C in cdc mutants. The specific fluxes of oxygen consumption confirmed that the respiratory capacity of cdc mutants is largely impaired in respect to the WT. Cdc28 and cdc35 mutants of Saccharomyces cerevisiae had been previously shown to exhibit high respiratory quotients (from 3 to 7) in respect to the WT (RQ approximately 1.0), which correlated with carbon and energy uncoupling probably the result of glucose-induced catabolite repression [Aon MA, Mónaco ME, Cortassa S (1995) Exp Cell Res 217, 42-51; Mónaco ME, Valdecantos PA, Aon MA (1995) Exp Cell Res 217, 52-56].

摘要

温度敏感型细胞分裂周期(cdc)G1突变体cdc28和cdc35在限制温度下相对于野生型菌株A364A(WT)显示出线粒体体积减小。在所研究的线粒体生物发生的三个标准中,即每个细胞中的线粒体数量、线粒体占据的细胞相对面积或内膜占据的线粒体相对面积,只有第二个指标在cdc突变体中显著低于野生型。线粒体内膜的发育并未补偿细胞器体积的减小。显然,线粒体生物发生减少并非由于温度变化,因为在25摄氏度时,cdc突变体细胞中线粒体占据的相对面积已经显著降低。氧气消耗的比通量证实,相对于野生型,cdc突变体的呼吸能力在很大程度上受损。先前已表明,酿酒酵母的Cdc28和Cdc35突变体相对于野生型(呼吸商约为1.0)表现出高呼吸商(3至7),这与碳和能量解偶联相关,可能是葡萄糖诱导的分解代谢物阻遏的结果[Aon MA, Mónaco ME, Cortassa S (1995) Exp Cell Res 217, 42 - 51; Mónaco ME, Valdecantos PA, Aon MA (1995) Exp Cell Res 217, 52 - 56]。

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Carbon and energy uncoupling associated with cell cycle arrest of cdc mutants of Saccharomyces cerevisiae may be linked to glucose-induced catabolite repression.与酿酒酵母cdc突变体的细胞周期停滞相关的碳和能量解偶联可能与葡萄糖诱导的分解代谢物阻遏有关。
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Carbon and energetic uncoupling are associated with block of division at different stages of the cell cycle in several cdc mutants of Saccharomyces cerevisiae.在酿酒酵母的几个细胞分裂周期(cdc)突变体中,碳和能量解偶联与细胞周期不同阶段的分裂阻滞有关。
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