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首页> 外文期刊>The biochemical journal >Complexes between the nonsense-mediated mRNA decay pathway factor human upf1 (up-frameshift protein 1) and essential nonsense-mediated mRNA decay factors in HeLa cells
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Complexes between the nonsense-mediated mRNA decay pathway factor human upf1 (up-frameshift protein 1) and essential nonsense-mediated mRNA decay factors in HeLa cells

机译:HeLa细胞中无意义介导的mRNA衰变途径因子人upf1(向上移码蛋白1)和必需的无意义介导的mRNA衰变因子之间的复合物

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pmRNAs harbouring premature translation-termination codons are usually degraded by the nonsense-mediated mRNA decay (NMD) pathway. Human up-frameshift protein 1 (Hupf1) is an NMD factor that is conserved between yeast and mammals. To isolate cellular complexes that are formed with Hupf1 and to explore the role of cellular proteins in NMD, we generated a HeLa cell line that stably expresses Hupf1 bearing a double-affinity tag (termed Hupf1-2tag). Hupf1-2tag is localized in the cytoplasm similar to the endogenous Hupf1 protein, and the Hupf1-2tag cell line is fully NMD-competent. Using affinity chromatography, Hupf1-2tag-associated proteins were isolated. MS and immunoblotting identified the NMD factors Hupf2 and Hupf3a/b as interaction partners of Hupf1. Size-exclusion chromatography indicates that the NMD factors Hupf1, Hupf2 and the large isoform of Hupf3a might exist in a stable, high-molecular-mass complex of approx. 1.3 MDa. Interestingly, the poly(A)-binding protein was also identified by MS to be associated specifically with Hupf1-2tag. In contrast with the interaction with Hupf2 and Hupf3a/b, the association of poly(A)-binding protein with Hupf1 is highly sensitive to treatment of the isolated complexes with RNase. Components of the exon–exon junction complex or the translational eukaryotic release factor (eRF) 3 were not identified in complexes associated with Hupf1-2tag. We discuss these findings in the context of current models of NMD./p
机译:带有过早翻译终止密码子的mRNA通常通过无义介导的mRNA衰减(NMD)途径降解。人类移码蛋白1(Hupf1)是一种NMD因子,在酵母和哺乳动物之间是保守的。为了分离与Hupf1形成的细胞复合物并探索细胞蛋白在NMD中的作用,我们生成了稳定表达带有双亲和标签(称为Hupf1-2tag)的Hupf1的HeLa细胞系。 Hupf1-2tag位于与内源性Hupf1蛋白相似的细胞质中,并且Hupf1-2tag细胞系完全具有NMD能力。使用亲和色谱,分离了与Hupf1-2tag相关的蛋白。 MS和免疫印迹确定NMD因子Hupf2和Hupf3a / b为Hupf1的相互作用伴侣。尺寸排阻色谱法表明,NMD因子Hupf1,Hupf2和Hupf3a的大同种型可能存在于稳定的,约质量的高分子复合物中。 1.3 MDa。有趣的是,poly(A)结合蛋白还被质谱鉴定为与Hupf1-2tag特异性结合。与与Hupf2和Hupf3a / b的相互作用相反,poly(A)结合蛋白与Hupf1的缔合对用RNase处理分离的复合物高度敏感。在与Hupf1-2tag相关的复合物中未鉴定出外显子-外显子连接复合物或翻译性真核释放因子(eRF)3的成分。我们将在当前NMD模型的背景下讨论这些发现。

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