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A genomic integration method for the simultaneous visualization of endogenous mRNAs and their translation products in living yeast.

机译:一种基因组整合方法,可同时显示活酵母中的内源性mRNA及其翻译产物。

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Protein localization within cells can be achieved by the targeting and localized translation of mRNA. Yet, our understanding of the dynamics of mRNA targeting and protein localization, and of how general this phenomenon is, is not clear. Plasmid-based expression systems have been used to visualize exogenously expressed mRNAs and proteins; however, these methods typically produce them at levels greater than endogenous and can result in mislocalization. Hence, a method that allows for the simultaneous visualization of endogenous mRNAs and their translation products in living cells is needed. We previously developed a method (m-TAG) to localize endogenously expressed mRNAs in yeast by chromosomal insertion of the MS2 aptamer sequence between the open-reading frame (ORF) and 3' UTR of any gene. Upon coexpression with the MS2 RNA-binding coat protein (MS2-CP) fused with GFP, the aptamer-tagged mRNAs bearing their 3' UTRs are localized using fluorescence microscopy. Here we describe an advanced method (mp-TAG) that allows for the simultaneous visualization of both endogenously expressed mRNAs and their translation products in living yeast for the first time. Homologous recombination is used to insert the mCherry gene and MS2-CP binding sites downstream from any ORF, in order to localize protein and mRNA, respectively. As proof of the concept, we tagged ATP2 as a representative gene and demonstrated that endogenous ATP2 mRNA and protein localize to mitochondria, as shown previously. In addition, we demonstrate that tagged proteins like Hhf2, Vph1, and Yef3 localize to their expected subcellular location, while the localization of their mRNAs is revealed for the first time.
机译:细胞内的蛋白质定位可通过靶向和mRNA的局部翻译来实现。然而,我们对mRNA靶向和蛋白质定位的动力学以及这种现象的普遍性的理解尚不清楚。基于质粒的表达系统已用于可视化外源表达的mRNA和蛋白质。但是,这些方法通常会以高于内源的水平生成它们,并可能导致定位错误。因此,需要一种允许在活细胞中同时可视化内源性mRNA及其翻译产物的方法。我们之前开发了一种方法(m-TAG),可通过在任何基因的开放阅读框(ORF)和3'UTR之间插入MS2适体序列进行染色体插入来定位酵母中内源表达的mRNA。与融合有GFP的MS2 RNA结合外壳蛋白(MS2-CP)共表达后,使用荧光显微镜对带有3'UTR的适体标记的mRNA进行定位。在这里,我们描述了一种先进的方法(mp-TAG),它允许首次在活酵母中同时可视化内源表达的mRNA及其翻译产物。同源重组用于在任何ORF下游插入mCherry基因和MS2-CP结合位点,以便分别定位蛋白质和mRNA。作为此概念的证明,我们将ATP2标记为代表性基因,并证明内源性ATP2 mRNA和蛋白质位于线粒体,如先前所示。此外,我们证明像Hhf2,Vph1和Yef3这样的标记蛋白定位于其预期的亚细胞位置,而其mRNA的定位是首次揭示。

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