Tron T, Yang M, Dick F A, Schmitt M E, Trumpower B L
Department of Biochemistry, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.
J Biol Chem. 1995 Apr 28;270(17):9961-70. doi: 10.1074/jbc.270.17.9961.
Subunit 6 of the mitochondrial cytochrome bc1 complex regulates the activity of the bc1 complex in Saccharomyces cerevisiae but is not essential for respiration. To test whether QCR6, the nuclear gene which encodes subunit 6, might be functionally redundant with any other gene(s), we screened for mutations in yeast genes which are essential when the otherwise non-essential QCR6 is deleted from the yeast chromosome. We obtained such quinolcytochrome c reductase subunit-requiring mutants in two complementation groups, which we named qsr1 and qsr2. The qsr mutants require QCR6 for viability on fermentable and non-fermentable carbon sources, indicating that QCR6 is covering lethal mutations in qsr1 and qsr2, even when the yeast do not require respiration. QSR1 was cloned by rescuing the synthetic lethality of a qsr1-1 mutant. QSR1 encodes a 25.4-kDa protein which is 65% identical to a protein encoded by QM, a highly conserved human gene which has been implicated in tumorigenesis. In mammals QM is down-regulated during adipocyte, kidney, and heart differentiation, and in Nicotiana the homolog of QM is also down-regulated during differentiation. When one chromosomal copy of QSR1 was deleted in a diploid yeast strain, haploid spores derived therefrom and carrying the deletion were unable to grow on fermentable or non-fermentable carbon sources. Although QCR6 allows the qsr1-1 mutant to grow, it will not substitute for QSR1, since the deletion of QSR1 is lethal even if QCR6 is present. These results indicate a novel genetic relationship between a subunit of the mitochondrial respiratory chain and an essential gene in yeast which is homologous to a gene implicated in differentiation in other eukaryotes.
线粒体细胞色素bc1复合物的亚基6调节酿酒酵母中bc1复合物的活性,但对呼吸作用并非必不可少。为了测试编码亚基6的核基因QCR6是否可能与其他任何基因在功能上冗余,我们筛选了酵母基因中的突变,这些基因在从酵母染色体中删除原本非必需的QCR6时变得必不可少。我们在两个互补组中获得了这种需要喹啉细胞色素c还原酶亚基的突变体,我们将其命名为qsr1和qsr2。qsr突变体在可发酵和不可发酵碳源上的生存需要QCR6,这表明即使酵母不需要呼吸,QCR6也能掩盖qsr1和qsr2中的致死突变。通过挽救qsr1-1突变体的合成致死性克隆了QSR1。QSR1编码一种25.4 kDa的蛋白质,该蛋白质与QM编码的蛋白质有65%的同一性,QM是一个高度保守的人类基因,与肿瘤发生有关。在哺乳动物中,QM在脂肪细胞、肾脏和心脏分化过程中表达下调,在烟草中,QM的同源物在分化过程中也表达下调。当在二倍体酵母菌株中删除QSR1的一个染色体拷贝时,由此产生的携带该缺失的单倍体孢子无法在可发酵或不可发酵碳源上生长。尽管QCR6允许qsr1-1突变体生长,但它不能替代QSR1,因为即使存在QCR6,QSR1的缺失也是致死的。这些结果表明线粒体呼吸链亚基与酵母中的一个必需基因之间存在一种新的遗传关系,该必需基因与其他真核生物中涉及分化的基因同源。