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首页> 外文期刊>PLoS Biology >Extensive Association of Functionally and Cytotopically Related mRNAs with Puf Family RNA-Binding Proteins in Yeast
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Extensive Association of Functionally and Cytotopically Related mRNAs with Puf Family RNA-Binding Proteins in Yeast

机译:功能和细胞相关的mRNA与Puf家族RNA结合蛋白在酵母中的广泛关联。

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Genes encoding RNA-binding proteins are diverse and abundant in eukaryotic genomes. Although some have been shown to have roles in post-transcriptional regulation of the expression of specific genes, few of these proteins have been studied systematically. We have used an affinity tag to isolate each of the five members of the Puf family of RNA-binding proteins in Saccharomyces cerevisiae and DNA microarrays to comprehensively identify the associated mRNAs. Distinct groups of 40–220 different mRNAs with striking common themes in the functions and subcellular localization of the proteins they encode are associated with each of the five Puf proteins: Puf3p binds nearly exclusively to cytoplasmic mRNAs that encode mitochondrial proteins; Puf1p and Puf2p interact preferentially with mRNAs encoding membrane-associated proteins; Puf4p preferentially binds mRNAs encoding nucleolar ribosomal RNA-processing factors; and Puf5p is associated with mRNAs encoding chromatin modifiers and components of the spindle pole body. We identified distinct sequence motifs in the 3′-untranslated regions of the mRNAs bound by Puf3p, Puf4p, and Puf5p. Three-hybrid assays confirmed the role of these motifs in specific RNA–protein interactions in vivo. The results suggest that combinatorial tagging of transcripts by specific RNA-binding proteins may be a general mechanism for coordinated control of the localization, translation, and decay of mRNAs and thus an integral part of the global gene expression program.
机译:编码RNA结合蛋白的基因在真核基因组中是多种多样的。尽管已显示某些蛋白在特定基因表达的转录后调控中起作用,但对这些蛋白的研究很少。我们已经使用亲和标签来分离酿酒酵母和DNA微阵列中RNA结合蛋白的Puf家族的五个成员中的每个成员,以全面鉴定相关的mRNA。不同的40-220种不同的mRNA在其编码的蛋白的功能和亚细胞定位方面具有共同的主题,它们与这5种Puf蛋白相关:Puf3p几乎只与编码线粒体蛋白的胞质mRNA结合。 Puf1p和Puf2p与编码膜相关蛋白的mRNA优先相互作用。 Puf4p优先结合编码核仁核糖体RNA加工因子的mRNA; Puf5p与编码染色质修饰剂和纺锤极体成分的mRNA相关。我们在由Puf3p,Puf4p和Puf5p结合的mRNA的3'-非翻译区中确定了不同的序列基序。三杂交试验证实了这些基序在体内特定RNA-蛋白质相互作用中的作用。结果表明,特定RNA结合蛋白对转录本进行组合标记可能是协调控制mRNA的定位,翻译和衰减的通用机制,因此是全球基因表达程序不可或缺的一部分。

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