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Association of yeast Upf1p with direct substrates of the NMD pathway

机译:酵母Upf1p与NMD途径的直接底物的关联

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摘要

Nonsense-mediated mRNA decay (NMD) is a surveillance mechanism that detects and degrades transcripts containing premature translation termination codons. Gene expression profiling experiments have shown that inactivation of the NMD pathway leads to the accumulation of both aberrant, nonsense-containing mRNAs, and many apparently wild-type transcripts. Such increases in transcript steady-state levels could arise from direct changes in the respective mRNA half-lives, or indirectly, as a consequence of the stabilization of transcripts encoding specific regulatory proteins. Here, we distinguished direct from indirect substrates by virtue of their association with the Saccharomyces cerevisiae Upf1 protein. Analyses of this dataset, and its comparison to the sets of transcripts that respectively increase or decrease in abundance when NMD is either inactivated or reactivated, indicate that the number of direct NMD substrates is larger than previously thought and that low abundance, alternatively transcribed mRNAs, i.e., mRNAs whose 5' ends are derived from previously unannotated 5' flanking sequences, comprise a significant class of direct substrates. Using thiamine metabolism as an example, we also show that apparent NMD-regulated cellular pathways may actually reflect the detection of low-abundance alternative transcripts under conditions where a pathway is repressed.
机译:无意义介导的mRNA衰减(NMD)是一种监视机制,可检测和降解包含过早翻译终止密码子的转录本。基因表达谱实验表明,NMD途径的失活导致异常,无义的mRNA和许多明显的野生型转录本的积累。转录物稳态水平的这种增加可能是由于各自mRNA的半衰期的直接变化引起的,或者是由于编码特定调节蛋白的转录物的稳定作用而间接引起的。在这里,我们通过与酿酒酵母Upf1蛋白的关联将直接底物与间接底物区分开。对该数据集进行分析,并将其与在NMD失活或重新激活时分别增加或减少丰度的转录本组进行比较,表明直接NMD底物的数量比以前认为的要多,并且低丰度或转录的mRNAs,也就是说,其5'末端衍生自先前未注释的5'侧翼序列的mRNA包含大量直接底物。以硫胺素代谢为例,我们还表明,明显的NMD调控的细胞途径实际上可能反映了在途径被抑制的条件下低丰度替代转录物的检测。

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