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Identification of SMG6 cleavage sites and a preferred RNA cleavage motif by global analysis of endogenous NMD targets in human cells

机译:通过全局分析人类细胞中内源性NMD靶标​​来鉴定SMG6切割位点和优选的RNA切割基序

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In metazoans, cleavage by the endoribonuclease SMG6 is often the first degradative event in non-sense-mediated mRNA decay (NMD). However, the exact sites of SMG6 cleavage have yet to be determined for any endogenous targets, and most evidence as to the identity of SMG6 substrates is indirect. Here, we use Parallel Analysis of RNA Ends to specifically identify the 5′ termini of decay intermediates whose production is dependent on SMG6 and the universal NMD factor UPF1. In this manner, the SMG6 cleavage sites in hundreds of endogenous NMD targets in human cells have been mapped at high resolution. In addition, a preferred sequence motif spanning most SMG6 cleavage sites has been discovered and validated by mutational analysis. For many SMG6 substrates, depletion of SMG6 resulted in the accumulation of decapped transcripts, an effect indicative of competition between SMG6-dependent and SMG6-independent NMD pathways. These findings provide key insights into the mechanisms by which mRNAs targeted by NMD are degraded.
机译:在后生动物中,核糖核酸内切酶SMG6的切割通常是无义介导的mRNA衰减(NMD)中的第一个降解事件。但是,尚未确定任何内源性靶标的SMG6裂解的确切位点,有关SMG6底物身份的大多数证据是间接的。在这里,我们使用RNA末端的平行分析来特异性鉴定衰变中间体的5'末端,其产量取决于SMG6和通用NMD因子UPF1。以这种方式,人类细胞中数百个内源性NMD靶标​​中的SMG6切割位点已被高分辨率定位。另外,已经发现了跨越大多数SMG6切割位点的优选序列基序,并通过突变分析进行了验证。对于许多SMG6底物,SMG6的耗尽导致脱盖转录物的积累,这表明SMG6依赖性和SMG6依赖性NMD途径之间存在竞争。这些发现为NMD靶向的mRNA降解的机理提供了重要的见识。

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