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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Schizosaccharomyces pombe cardiolipin synthase is part of a mitochondrial fusion protein regulated by intron retention
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Schizosaccharomyces pombe cardiolipin synthase is part of a mitochondrial fusion protein regulated by intron retention

机译:Schizosaccharomyces Pombe Cardiolipin合成酶是通过内含子保留调节的线粒体融合蛋白的一部分

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Cardiolipin (CL) is a unique lipid component of mitochondria in all eukaryotes. It is important for the architecture of mitochondrial membranes and for mitochondrial dynamics. CL also creates a highly specific micro environment of mitochondrial protein machineries. CL biosynthetic pathway is, however, only partially characterized in the fission yeast Schizosaccharomyces pombe. Here we show that CL synthase is an essential protein in S. pombe. It is encoded by the ORE SPAC22A12.08c as a C terminal part of a tandem fusion protein together with a mitochondrial hydrolase of unknown function. Expression of S. pombe CL synthase is able to complement deletion of the CRD1 gene of Saccharomyces cerevisiae and, vice versa, S. cerevisiae CRD1 gene complements deletion of S. pombe SPAC22A12.08c. The proper expression of CL synthase and its partner in the tandem protein, the mitochondrial hydrolase, is regulated at the level of alternate intron splicing. The first part of the SPAC22A12.08c fusion protein could be translated from both major SPAC22A12.08c derived mRNAs, with and without intron IV. Functional CL synthase, however, is produced only from the minor SPAC22A12.08c derived mRNA that has intron IV retained. Thus, intron retention is a novel mechanism for the differential expression of two proteins that evolved as a fusion protein and are under the control of the same promoter.
机译:Cardiolipin(Cl)是所有真核生物中线粒体的独特脂质组分。对线粒体膜的结构和线粒体动力学非常重要。 CL还造成了线粒体蛋白质机械的高度特异性微环境。然而,Cl生物合成途径仅部分特征在裂变酵母Schizosaccharomyces Pombe中。在这里,我们表明Cl合成酶是S.Pombe中的必需蛋白。它由矿石Spac22a12.08c作为串联融合蛋白的C末端部分与未知功能的线粒体水解酶一起编码。 S.Pombe Cl合成酶的表达能够补充酿酒酵母CRD1基因的缺失,反之亦然,对酿酒酵母CRD1基因补充缺失S.Pombe Spac22A12.08C。 Cl合成酶及其伴侣在串联蛋白,线粒体水解酶的适当表达在交替内部剪接的水平下调节。 SPAC22A12.08C融合蛋白的第一部分可以由主要SPAC22A12.08C衍生的MRNA翻译,有和没有内部IV。然而,功能性Cl合成酶仅由具有内含子IV的次级Spac22a12.08C衍生的mRNA生产。因此,内含子保留是一种新的两种蛋白质表达的新机制,其两种蛋白质的表达为融合蛋白,并且在同一启动子的控制下。

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