Labouesse M, Slonimski P P
Centre de Génétique Moléculaire, Laboratoire propre du Centre National de la Recherche Scientifique associé à l'Université Pierre et Marie Curie, Gif-sur-Yvette, France.
EMBO J. 1983;2(2):269-76. doi: 10.1002/j.1460-2075.1983.tb01416.x.
The mitochondrial cob-box gene coding for apocytochrome b in yeast has five introns and six exons or two introns and three exons depending on the wild-type strain considered. Some intron mutations in this gene affect not only its expression but also that of another mitochondrial gene: oxi3. To understand better the function of introns in gene expression, we have constructed a series of new strains that differ only by the presence or absence of one of the five wild-type introns in the cytochrome b gene, the rest of the mitochondrial and nuclear genome remaining unchanged. All constructions result from in vivo recombination events between rho- donor and rho+ recipient mtDNA. The following genes have been constructed: [see text]. Interestingly, all the genes lead to the synthesis of cytochrome b, while only the genes having the intron bI4 allow the expression of oxi3. A nuclear gene, when mutated, can compensate for the absence of the intron bI4.
酵母中编码脱辅基细胞色素b的线粒体cob-box基因有五个内含子和六个外显子,或者根据所考虑的野生型菌株不同,有两个内含子和三个外显子。该基因中的一些内含子突变不仅影响其表达,还影响另一个线粒体基因oxi3的表达。为了更好地理解内含子在基因表达中的功能,我们构建了一系列新菌株,这些菌株之间的差异仅在于细胞色素b基因中五个野生型内含子之一的有无,线粒体和核基因组的其余部分保持不变。所有构建均来自rho-供体和rho+受体线粒体DNA之间的体内重组事件。构建了以下基因:[见正文]。有趣的是,所有基因都能导致细胞色素b的合成,而只有具有内含子bI4的基因能使oxi3表达。一个核基因在发生突变时,可以弥补内含子bI4的缺失。