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Temporal and spatial characterization of nonsense-mediated mRNA decay

机译:废话介导的mRNA衰变的时空特征

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摘要

Nonsense-mediated mRNA decay (NMD) is a quality control mechanism responsible for "surveying" mRNAs during translation and degrading those that harbor a premature termination codon (PTC). Currently the intracellular spatial location of NMD and the kinetics of its decay step in mammalian cells are under debate. To address these issues, we used single-RNA fluorescent in situ hybridization (FISH) and measured the NMD of PTCcontaining ??-globin mRNA in intact single cells after the induction of ??-globin gene transcription. This approach preserves temporal and spatial information of the NMD process, both of which would be lost in an ensemble study. We determined that decay of the majority of PTC-containing ??-globin mRNA occurs soon after its export into the cytoplasm, with a half-life of <1 min; the remainder is degraded with a half-life of >12 h, similar to the half-life of normal PTC-free ??-globin mRNA, indicating that it had evaded NMD. Importantly, NMD does not occur within the nucleoplasm, thus countering the long-debated idea of nuclear degradation of PTC-containing transcripts. We provide a spatial and temporal model for the biphasic decay of NMD targets.
机译:无意义介导的mRNA衰变(NMD)是一种质量控制机制,负责在翻译过程中“提供” mRNA并降解具有过早终止密码子(PTC)的mRNA。目前,在哺乳动物细胞中,NMD在细胞内的空间定位及其衰变步骤的动力学正在争论中。为了解决这些问题,我们使用了单RNA荧光原位杂交(FISH),并在诱导γ-球蛋白基因转录后,在完整的单个细胞中测量了含PTC的γ-球蛋白mRNA的NMD。这种方法保留了NMD过程的时间和空间信息,两者在整体研究中都会丢失。我们确定,大多数含PTC的γ-珠蛋白mRNA的降解在其输出到细胞质后不久就发生,其半衰期小于1分钟。其余部分的降解半衰期> 12小时,与正常的无PTC的γ-珠蛋白mRNA的半衰期相似,表明它已逃避了NMD。重要的是,NMD不会在核质内发生,因此与长期争论的含PTC转录物的核降解的想法相抵触。我们为NMD目标的双相衰减提供了一个时空模型。

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