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“盒效应”的分子基础,一种成熟酶缺陷导致酵母线粒体DNA两个分裂基因中两个内含子缺失剪接。

Molecular basis of the 'box effect', A maturase deficiency leading to the absence of splicing of two introns located in two split genes of yeast mitochondrial DNA.

作者信息

Labouesse M, Netter P, Schroeder R

出版信息

Eur J Biochem. 1984 Oct 1;144(1):85-93. doi: 10.1111/j.1432-1033.1984.tb08434.x.

Abstract

In the mitochondrial DNA of Saccharomyces cerevisiae, the genes cob-box and oxi3, coding for apocytochrome b and cytochrome oxidase subunit I respectively, are split. Several mutations located in the introns of the cob-box gene prevent the synthesis of cytochrome b and cytochrome oxidase subunit I (this is known as the 'box effect').-We have elucidated the molecular basis of this phenomenon: these mutants are unable to excise the fourth intron of oxi3 from the cytochrome oxidase subunit I pre-mRNA; the absence of a functional bI4 mRNA maturase, a trans-acting factor encoded by the fourth intron of the cob-box gene explains this phenomenon. This maturase was already known to control the excision of the bI4 intron; consequently we have demonstrated that it is necessary for the processing of two introns located in two different genes. Mutations altering this maturase can be corrected, but only partially, by extragenic suppressors located in the mitochondrial (mim2) or in the nuclear (NAM2) genome. The gene product of these two suppressors should, therefore, control (directly or indirectly) the excision of the two introns as the bI4 mRNA maturase normally does.

摘要

在酿酒酵母的线粒体DNA中,分别编码脱辅基细胞色素b和细胞色素氧化酶亚基I的基因cob-box和oxi3是断裂的。位于cob-box基因内含子中的几个突变会阻止细胞色素b和细胞色素氧化酶亚基I的合成(这被称为“盒效应”)。我们已经阐明了这一现象的分子基础:这些突变体无法从细胞色素氧化酶亚基I前体mRNA中切除oxi3的第四个内含子;缺乏功能性的bI4 mRNA成熟酶,一种由cob-box基因的第四个内含子编码的反式作用因子解释了这一现象。这种成熟酶已知可控制bI4内含子的切除;因此我们证明它对于位于两个不同基因中的两个内含子的加工是必需的。改变这种成熟酶的突变可以被位于线粒体(mim2)或核(NAM2)基因组中的基因外抑制子校正,但只是部分校正。因此,这两个抑制子的基因产物应该像bI4 mRNA成熟酶通常那样控制(直接或间接)这两个内含子的切除。

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