McGraw P, Tzagoloff A
J Biol Chem. 1983 Aug 10;258(15):9459-68.
The cytochrome b gene of Saccharomyces cerevisiae D273-10B was previously shown to be composed of three exons and two introns (Nobrega, F.G., and Tzagoloff, A. (1980) J. Biol. Chem. 255, 9828-9837). In the present study nuclear respiratory deficient mutants of this strain have been screened for defects in processing of the cytochrome b pre-mRNA. Fifteen independently isolated mutants lacking cytochrome b have been assigned to a single genetic complementation group (G36). Members of this complementation group are blocked in the excision of the second intervening sequence of cytochrome b and consequently are unable to produce the mature mRNA. The wild type gene defined by this class of mutants has been named CBP2. A recombinant plasmid with the CBP2 gene has been selected from a library of wild type nuclear DNA and further subcloned by transformation of a cbp2 mutant to respiratory competency. The smallest plasmid (pG36/T5) capable of complementing cbp2 mutants and of restoring their ability to complete processing of the cytochrome b pre-mRNA has a nuclear DNA fragment of 2.6 kilobase pairs inserted at the BamHI site of the yeast vector YEp13. The sequence of the cloned DNA fragment has revealed an 1890-nucleotide-long reading frame encoding a basic protein with a molecular weight of 74,000. Deletion analysis confirms that the entire reading frame is required for complementation of cbp2 mutants. This reading frame is proposed to code for the CBP2 gene product.
酿酒酵母D273-10B的细胞色素b基因先前已被证明由三个外显子和两个内含子组成(诺布雷加,F.G.,和察戈洛夫,A.(1980年)《生物化学杂志》255卷,9828 - 9837页)。在本研究中,已对该菌株的核呼吸缺陷型突变体进行筛选,以检测细胞色素b前体mRNA加工过程中的缺陷。15个独立分离的缺乏细胞色素b的突变体已被归入一个单一的遗传互补群(G36)。该互补群的成员在细胞色素b第二个间隔序列的切除过程中受阻,因此无法产生成熟的mRNA。由这类突变体定义的野生型基因已被命名为CBP2。已从野生型核DNA文库中筛选出带有CBP2基因的重组质粒,并通过将cbp2突变体转化为呼吸能力正常的菌株进行进一步亚克隆。能够互补cbp2突变体并恢复其完成细胞色素b前体mRNA加工能力的最小质粒(pG36/T5),在酵母载体YEp13的BamHI位点插入了一个2.6千碱基对的核DNA片段。克隆的DNA片段序列揭示了一个1890个核苷酸长的阅读框,编码一种分子量为74,000的碱性蛋白。缺失分析证实,整个阅读框是互补cbp2突变体所必需的。这个阅读框被认为编码CBP2基因产物。