Kloeckener-Gruissem B, McEwen J E, Poyton R O
Department of Molecular, Cellular and Developmental Biology, University of Colorado, Boulder 80309-0347.
Curr Genet. 1987;12(5):311-22. doi: 10.1007/BF00405753.
Fourteen nuclear complementation groups of mutants that specifically affect the three mitochondrially-encoded subunits of yeast cytochrome c oxidase have been characterized. Genes represented by these complementation groups are not required for mitochondrial transcription, transcript processing, or translation per se but are required for the expression of one of the three genes--COX1, COX2, or COX3--which encode the cytochrome c oxicase subunits I, II, or III, respectively. Five of these genes affect the biogenesis of cytochrome c oxidase subunit I, 3 affect the biogenesis of subunit II, 3 affect the biogenesis of subunit III and 3 affect the biogenesis of both cytochrome c oxidase subunit I and cytochrome b, the product of COB. Among the 5 complementation groups of mutants that affect the expression of COX1, 2 lack COX1 transcripts, 1 produces incompletely processed COX1 transcripts, and 2 contain normal levels of normal-sized COX1 transcripts. In contrast, all 3 complementation groups which affect the expression of COX2 and all 3 complementation groups which affect the expression of COX3 exhibit no, or little, detectable difference with respect to the wild type pattern of transcripts. The 3 complementation groups which affect the expression of both COX1 and COB all have aberrant COX1 and COB transcript patterns. These findings indicate that multiple trans-acting nuclear genes are required for specific expression of each COX gene encoded on mitochondrial DNA and suggest that their products act at different steps in the expression of these mitochondrial genes.
已对专门影响酵母细胞色素c氧化酶三个线粒体编码亚基的14个核互补突变体群进行了表征。这些互补群所代表的基因本身并非线粒体转录、转录物加工或翻译所必需,但对于分别编码细胞色素c氧化酶亚基I、II或III的三个基因(COX1、COX2或COX3)之一的表达是必需的。其中5个基因影响细胞色素c氧化酶亚基I的生物合成,3个影响亚基II的生物合成,3个影响亚基III的生物合成,3个影响细胞色素c氧化酶亚基I和COB产物细胞色素b的生物合成。在影响COX1表达的5个互补突变体群中,2个缺乏COX1转录物,1个产生加工不完全的COX1转录物,2个含有正常水平的正常大小的COX1转录物。相比之下,影响COX2表达的所有3个互补群以及影响COX3表达的所有3个互补群在转录物的野生型模式方面没有或几乎没有可检测到的差异。影响COX1和COB表达的3个互补群都有异常的COX1和COB转录物模式。这些发现表明,线粒体DNA上编码的每个COX基因的特异性表达需要多个反式作用核基因,并且表明它们的产物在这些线粒体基因表达的不同步骤中起作用。