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Transcript selection and the recruitment of mRNA decay factors for NMD in Saccharomyces cerevisiae

机译:酿酒酵母中NMD的转录本选择和mRNA衰变因子的募集

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摘要

In Saccharomyces cerevisiae, nonsense-mediated mRNA decay (NMD) requires Upf1p, Upf2p, and Upf3p to accelerate the decay rate of two unique classes of transcripts: (1) nonsense mRNAs that arise through errors in gene expression, and (2) naturally occurring transcripts that lack coding errors but have built-in features that target them for accelerated decay (error-free mRNAs). NMD can trigger decay during any round of translation and can target Cbc-bound or elF-4E-bound transcripts. Extremely low concentrations of the Upf proteins relative to the total pool of transcripts make it difficult to understand how nonsense transcripts are selectively recruited. To stimulate debate, we propose two alternative mechanisms for selecting nonsense transcripts for NMD and for assembling components of the surveillance complex, one for the first (pioneer) round of translation, called "nuclear marking," and the other for subsequent rounds, called "reverse assembly." The model is designed to accommodate (1) the low abundance of NMD factors, (2) the role of nucleocytoplasmic shuttling proteins in NMD, (3) the independent and nonobligate order of assembly of two different subcomplexes of NMD factors, and (4) the ability of NMD to simultaneously reduce or eliminate the synthesis of truncated proteins produced by nonsense transcripts while down-regulating but not completely eliminating functional proteins produced from error-free NMD-sensitive transcripts.
机译:在酿酒酵母中,无义介导的mRNA衰变(NMD)需要Upf1p,Upf2p和Upf3p来加速两种独特的转录物的衰变速率:(1)通过基因表达错误产生的无意义mRNA,以及(2)自然发生转录本没有编码错误,但具有将其定位为加速衰减的内置功能(无错误的mRNA)。 NMD可以在任何一轮翻译过程中触发衰变,并且可以靶向Cbc结合或elF-4E结合的转录本。相对于全部转录物而言,Upf蛋白的浓度极低,这使得很难理解如何选择性地募集废话转录物。为了激发辩论,我们提出了两种替代机制,用于为NMD选择无意义的转录本和组装监视复合体的组件,一种用于第一轮(先驱者)翻译,称为“核标记”,另一种用于后续轮次,称为“核标记”。反向装配。”该模型旨在适应(1)NMD因子含量低,(2)核质穿梭蛋白在NMD中的作用,(3)NMD因子的两个不同亚复合物的独立独立排列和(4) NMD同时减少或消除无义转录物产生的截短蛋白合成的能力,同时下调但不能完全消除无错误NMD敏感转录物产生的功能蛋白。

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