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酿酒酵母温度敏感型核小菌落突变体的研究:线粒体功能的表型可逆性

Studies on a temperature sensitive nuclear petite mutant of Saccharomyces cerevisiae: phenotypic reversibility of the mitochondrial functions.

作者信息

Guerrini A M, Pedrini M A, Cavaliere F, Gionti E

出版信息

Mol Gen Genet. 1975 Sep 29;140(2):149-58. doi: 10.1007/BF00329782.

Abstract
  1. We have studied the pleiotropic effect of a single-gene mutation of the pts mutant strain 1511 grown at 23 degrees C and 36 degrees C. 2. Growth of the mutant at the non-permissive temperature results in a decrease of respiration rate to about 50% after one generation and to less than 5% after five generations. The cytochrome spectra analysis revealed that only cytochrome c was present after growth at 36 degrees C. 3. Mitochondrial protein synthesis experiments in vivo demonstrated that the protein synthesizing system was not as rapidly inactivated by high temperature as the respiratory system. 4. The recovery of the respiratory capacity of the cells at 23 degrees C is complete but dependent on the de novo synthesis of a temperature sensitive protein.
摘要
  1. 我们研究了pts突变株1511在23摄氏度和36摄氏度下生长时单基因突变的多效性效应。2. 突变体在非允许温度下生长,一代后呼吸速率降低至约50%,五代后降至5%以下。细胞色素光谱分析表明,在36摄氏度下生长后仅存在细胞色素c。3. 体内线粒体蛋白质合成实验表明,蛋白质合成系统不像呼吸系统那样迅速被高温灭活。4. 细胞在23摄氏度下呼吸能力的恢复是完全的,但依赖于一种温度敏感蛋白的从头合成。

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