首页> 外文期刊>Molecular & cellular proteomics: MCP >The Protein Coded by a Short Open Reading Frame, Not by the Annotated Coding Sequence, Is the Main Gene Product of the Dual-Coding Gene MIEF1
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The Protein Coded by a Short Open Reading Frame, Not by the Annotated Coding Sequence, Is the Main Gene Product of the Dual-Coding Gene MIEF1

机译:由短开口阅读框架编码的蛋白质,而不是通过注释的编码序列编码,是双编码基因Mief1的主要基因产物

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Proteogenomics and ribosome profiling concurrently show that genes may code for both a large and one or more small proteins translated from annotated coding sequences (CDSs) and unannotated alternative open reading frames (named alternative ORFs or altORFs), respectively, but the stoichiometry between large and small proteins translated from a same gene is unknown. MIEF1, a gene recently identified as a dual-coding gene, harbors a CDS and a newly annotated and actively translated altORF located in the 5'UTR. Here, we use absolute quantification with stable isotope-labeled peptides and parallel reaction monitoring to determine levels of both proteins in two human cells lines and in human colon. We report that the main MIEF1 translational product is not the canonical 463 amino acid MiD51 protein but the small 70 amino acid alternative MiD51 protein (altMiD51). These results demonstrate the inadequacy of the single CDS concept and provide a strong argument for incorporating altORFs and small proteins in functional annotations.
机译:蛋白素体和核糖体分析同时表明基因可以分别代码为一个大的和一个或多个小蛋白质,分别由注释的编码序列(CDSS)和未经发布的替代开放阅读帧(命名的替代ORF或Altorfs)代码,但是大的和化学计量由同一基因翻译的小蛋白质未知。 Mief1,最近鉴定为双编码基因的基因,HARBORS A CD和位于5'UTR的新注释和主动翻译的Altorf。这里,我们使用具有稳定同位素标记的肽和平行反应监测的绝对定量,以确定两种人细胞中和人结肠中的两种蛋白质的水平。我们报告称,主要的MieF1转化产品不是规范463氨基酸MID51蛋白,但小型70氨基酸替代的MID51蛋白(ALTMID51)。这些结果表明了单一CD概念的不足,并为在功能注释中掺入Altorfs和小蛋白质的强烈争论。

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