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Method for quantitative analysis of nonsense-mediated mRNA decay at the single cell level

机译:在单细胞水平上无义介导的mRNA衰变的定量分析方法

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摘要

Nonsense-mediated mRNA decay (NMD) is a ubiquitous mechanism of degradation of transcripts with a premature termination codon. NMD eliminates aberrant mRNA species derived from sources of genetic variation such as gene mutations, alternative splicing and DNA rearrangements in immune cells. In addition, recent data suggest that NMD is an important mechanism of global gene expression regulation. Here, we describe new reporters to quantify NMD activity at the single cell level using fluorescent proteins of two colors: green TagGFP2 and far-red Katushka. TagGFP2 was encoded by mRNA targeted to either the splicing-dependent or the long 3'UTR-dependent NMD pathway. Katushka was used as an expression level control. Comparison of the fluorescence intensities of cells expressing these reporters and cells expressing TagGFP2 and Katushka from corresponding control NMD-independent vectors allowed for the assessment of NMD activity at the single cell level using fluorescence microscopy and flow cytometry. The proposed reporter system was successfully tested in several mammalian cell lines and in transgenic Xenopus embryos.
机译:无义介导的mRNA衰变(NMD)是普遍存在的具有过早终止密码子的转录物降解机制。 NMD消除了来自遗传变异源的异常mRNA物种,例如免疫细胞中的基因突变,选择性剪接和DNA重排。此外,最近的数据表明NMD是全球基因表达调控的重要机制。在这里,我们描述了新的报道者,使用两种颜色的荧光蛋白:绿色TagGFP2和远红色的Katushka在单个细胞水平上量化NMD活性。 TagGFP2由靶向剪接依赖性或长3'UTR依赖性NMD途径的mRNA编码。 Katushka被用作表达水平对照。比较来自表达这些报道分子的细胞和表达来自相应的对照NMD非依赖性载体的TagGFP2和Katushka的细胞的荧光强度,可以使用荧光显微镜和流式细胞术评估单个细胞水平的NMD活性。拟议的报告系统已成功在几种哺乳动物细胞系和转基因非洲爪蟾胚胎中进行了测试。

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