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Reverse genetic analysis of yeast YPR099C/MRPL51 reveals a critical role of both overlapping ORFs in respiratory growth and MRPL51 in mitochondrial DNA maintenance

机译:酵母YPR099C / MRPL51的逆向遗传分析揭示了重叠ORF在线粒体DNA维持中的重叠ORF和MRPL51中的关键作用

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The Saccharomyces cerevisiae genome contains 6572 ORFs, of which 680 ORFs are classified as dubious ORFs. A dubious ORF is a small, noncoding, nonconserved ORF that overlaps with another ORF of the complementary strand. Our study characterizes a dubious/nondubious ORF pair, YPR099C/MRPL51, and shows the transcript and protein level expression of YPR099C. Its subcellular localization was observed in the mitochondria. The overlapping ORF, MRPL51, encodes a mitochondrial ribosomal protein of large subunit. Deletion of any ORF from YPR099C/MRPL51 pair induces common phenotypes, i.e. loss of mtDNA, lack of mitochondrial fusion and lack of respiratory growth, due to the double deletion (ypr099c Delta/Delta mrpl51 Delta/Delta) caused by sequence overlap. Hence, we created the single deletions of each ORF of the YPR099C/MRPL51 pair by an alternative approach to distinguish their phenotypes and identify the specific functions. Both the ORFs were found essential for the functional mitochondria and respiratory growth, but MRPL51 showed its specific requirement in mtDNA stability. The mechanism of mtDNA maintenance by Mrpl51 is probably Mhr1 dependent that physically interacts with Mrpl51 and also regulates mtDNA repair. Overall, our study provides strong evidence for the protein level expression of a dubious ORF YPR099C and the bifunctional role of Mrpl51 in mtDNA maintenance.
机译:Saccharomyces酿酒酵母基因组含有6572个ORF,其中680个ORF被归类为可疑ORF。可疑的ORF是一个小的,非沉积的非折叠ORF,其与互补股的另一个ORF重叠。我们的研究表征了一种可疑/非柔和ORF对,YPR099C / MRPL51,并显示YPR099C的转录物和蛋白质水平表达。在线粒体中观察到其亚细胞定位。重叠ORF,MRPL51,编码大亚基的线粒体核糖体蛋白。缺失来自YPR099C / MRPL51对的任何ORF诱导常见表型,即MTDNA丧失,由于序列重叠引起的双缺失(YPR099C Delta / delta mR51Δ/ delta),缺乏线粒体融合和缺乏呼吸生长。因此,我们通过替代方法创建了YPR099C / MRPL51对的每个ORF的单个缺失,以区分其表型并识别特定功能。发现ORF都是必不可少的功能线粒体和呼吸生长,但MRPL51显示其在MTDNA稳定性方面的具体要求。 MRPL51的MTDNA维持机制可能是MHR1依赖性,其与MRPL51物理相互作用,并调节MTDNA修复。总体而言,我们的研究为可疑ORF YPR099C的蛋白质水平表达和MRPL51在MTDNA维持中的双官能作用提供了强有力的证据。

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