Payne M J, Schweizer E, Lukins H B
Department of Biochemistry, Monash University, Clayton, Victoria, Australia.
Curr Genet. 1991 May;19(5):343-51. doi: 10.1007/BF00309594.
This study details the characteristics of two temperature-conditional pet mutants of yeast, strains ts1860 and ts379, which at the non-permissive temperature show deficiencies in the formation of three mitochondrially encoded subunits of the ATP synthase complex. By analysis of mitochondrial translation products, and of mitochondrial transcription in temperature shift experiments from the permissive (22 degrees C) to the non-permissive (36 degrees C) temperature, it was concluded that the nuclear mutations in both mutants primarily inhibit synthesis of ATP synthase subunit 9, and that reductions in subunit 8 and 6 synthesis are secondary pleiotropic effects. Following transfer to 36 degrees C, cells of mutant ts379 display a near complete inhibition of subunit 9 synthesis within 1 h, coincident with a marked reduction in the level of the cognate oli1 mRNA. On the other hand, near complete inhibition of subunit 9 synthesis in strain ts1860 occurs after 3 h at 36 degrees C, at which time there is little change in the level of subunit 9 mRNA. In both mutants the mRNA levels for subunits 6 and 8 are not significantly affected at the time of inhibition of subunit 9 synthesis. Provision of an alternative source of subunit 8, translated extra-mitochondrially for import into the organelle, does not overcome the mutant phenotype of either mutant at 36 degrees C, confirming that subunit 8 is not the sole or primary deficiency in each mutant. The mutants indicate that the products of a least two nuclear genes (designated AEP1 and AEP2) are required for the expression of the mitochondrial oli1 gene and the synthesis of subunit 9. (ABSTRACT TRUNCATED AT 250 WORDS)
本研究详细描述了酵母的两个温度条件性pet突变体ts1860和ts379菌株的特征,这两个突变体在非允许温度下,ATP合酶复合体的三个线粒体编码亚基的形成存在缺陷。通过分析线粒体翻译产物以及在从允许温度(22℃)转移到非允许温度(36℃)的温度转换实验中的线粒体转录情况,得出结论:两个突变体中的核突变主要抑制ATP合酶亚基9的合成,而亚基8和6合成的减少是次要的多效性效应。转移到36℃后,突变体ts379的细胞在1小时内亚基9的合成几乎完全受到抑制,同时同源oli1 mRNA水平显著降低。另一方面,ts1860菌株在36℃下3小时后亚基9的合成几乎完全受到抑制,此时亚基9 mRNA水平几乎没有变化。在两个突变体中,亚基9合成受到抑制时,亚基6和8的mRNA水平均未受到显著影响。提供一个额外的亚基8来源,即在线粒体外翻译后导入细胞器,在36℃时并不能克服任何一个突变体的突变表型,这证实亚基8不是每个突变体的唯一或主要缺陷。这些突变体表明,线粒体oli1基因的表达和亚基9的合成至少需要两个核基因(命名为AEP1和AEP2)的产物。(摘要截短于250字)