Colson A M, Slonimski P P
Mol Gen Genet. 1979 Jan 2;167(3):287-98. doi: 10.1007/BF00267421.
Diuron-resistance, DIU (Colson et al., 1977), antimycin-resistance, ANA (Michaelis, 1976; Burger et al., 1976), funiculosin-resistance, FUN (Pratje and Michaelis, 1977; Burger et al., 1977) and mucidin-resistance, MUC (Subik et al., 1977) are each coded by a pair of genetic loci on the mit DNA of S. cerevisiae. In the present paper, these respiratiory-competent, drug-resistant loci are localized relative to respiratory-deficient BOX mutants deficient in coenzyme QH2-cytochrome c reductase (Kotylak and Slonimski, 1976, 1977) using deletion and recombination mapping. Three drug-resistant loci possessing distinct mutated allelic forms are distinguished. DIU1 is allelic or closely linked to ANA2, FUN1 and BOX1; DIU2 is allelic or closely linked to ANA1, MUC1 and BOX4/5; MUC2 is allelic to BOX6. The high recombinant frequencies observed between the three loci (13% on the average for 33 various combinations analyzed) suggest the existence of either three genes coding for three distinct polypeptides or of a single gene coding for a single polypeptide but subdivided into three easily separable segments. The resistance of the respiratory-chain observed in vitro in the drug-resistant mutants and the allelism relationships between respiratory-competent, drug-resistant loci and coQH2-cyt c reductase deficient, BOX, loci strongly suggest that each of the three drug-resistant loci codes for a structural gene-product which is essential for the normal coQH2-cyt c reductase activity and is obviously a good candidate for a gene product of the drug-resistant loci mapped in this paper. Polypeptide length modifications of cytochrome b were observed in mutants deficient in the coQH2-cyt c red and localized at the BOX1, BOX4 and BOX6 genetic loci (Claisse et al., 1977, 1978) which are precisely the loci allelic to drug resistant mutants as shown in the present work. Taken together these two sets of data provide a strong evidence in favor of the idea that there exist three non contiguous segments of the mitochondrial DNA sequence which code for a single polypeptide sequence of cytochrome b. In each segment mutations which modify the polypeptide sequence can occur leading to the loss (BOX mutants) or to a modification (drug resistant mutants) of the enzyme activity.
抗敌草隆(DIU,科尔森等人,1977年)、抗抗霉素(ANA,米夏埃利斯,1976年;伯格等人,1976年)、抗真菌素(FUN,普拉特杰和米夏埃利斯,1977年;伯格等人,1977年)和抗粘菌素(MUC,苏比克等人,1977年)分别由酿酒酵母线粒体DNA上的一对基因座编码。在本文中,利用缺失和重组作图法,将这些具有呼吸能力的抗药基因座相对于缺乏辅酶QH2-细胞色素c还原酶的呼吸缺陷型BOX突变体进行定位(科蒂拉克和斯洛尼姆斯基,1976年,1977年)。区分出了三个具有不同突变等位基因形式的抗药基因座。DIU1与ANA2、FUN1和BOX1等位或紧密连锁;DIU2与ANA1、MUC1和BOX4/5等位或紧密连锁;MUC2与BOX6等位。在这三个基因座之间观察到的高重组频率(在所分析的33种不同组合中平均为13%)表明,要么存在编码三种不同多肽的三个基因,要么存在编码单一多肽但细分为三个易于分离片段的单个基因。在抗药突变体中体外观察到的呼吸链抗性以及具有呼吸能力的抗药基因座与缺乏辅酶QH2-细胞色素c还原酶的BOX基因座之间的等位关系强烈表明,这三个抗药基因座中的每一个都编码一种结构基因产物,该产物对于正常的辅酶QH2-细胞色素c还原酶活性至关重要,并且显然是本文中定位的抗药基因座的基因产物的良好候选者。在缺乏辅酶QH2-细胞色素c还原酶且位于BOX1、BOX4和BOX6基因座的突变体中观察到了细胞色素b多肽长度的改变(克莱斯等人,1977年,1978年);正如本文所示,这些基因座恰好是与抗药突变体等位的基因座。这两组数据合在一起为以下观点提供了有力证据,即线粒体DNA序列存在三个不连续的片段,它们编码细胞色素b的单一多肽序列。在每个片段中,可能会发生改变多肽序列的突变,从而导致酶活性丧失(BOX突变体)或改变(抗药突变体)。