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Interactions between UPF1, eRFs, PABP and the exon junction complex suggest an integrated model for mammalian NMD pathways

机译:UPF1,eRF,PABP和外显子连接复合体之间的相互作用提示哺乳动物NMD通路的整合模型

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摘要

Nonsense-mediated mRNA decay (NMD) represents a key mechanism to control the expression of wild-type and aberrant mRNAs. Phosphorylation of the protein UPF1 in the context of translation termination contributes to committing mRNAs to NMD. We report that translation termination is inhibited by UPF1 and stimulated by cytoplasmic poly(A)-binding protein (PABPC1). UPF1 binds to eRF1 and to the GTPase domain of eRF3 both in its GTP- and GDP-bound states. Importantly, mutation studies show that UPF1 can interact with the exon junction complex (EJC) alternatively through either UPF2 or UPF3b to become phosphorylated and to activate NMD. On this basis, we discuss an integrated model where UPF1 halts translation termination and is phosphorylated by SMG1 if the termination-promoting interaction of PABPC1 with eRF3 cannot readily occur. The EJC, with UPF2 or UPF3b as a cofactor, interferes with physiological termination through UPF1. This model integrates previously competing models of NMD and suggests a mechanistic basis for alternative NMD pathways.
机译:无意义介导的mRNA衰变(NMD)代表了控制野生型和异常mRNA表达的关键机制。在翻译终止的情况下,蛋白质UPF1的磷酸化有助于将mRNA提交给NMD。我们报告翻译终止被UPF1抑制,并由胞质poly(A)结合蛋白(PABPC1)刺激。 UPF1在绑定GTP和GDP的状态下都绑定到eRF1和eRF3的GTPase域。重要的是,突变研究表明,UPF1可以通过UPF2或UPF3b与外显子连接复合体(EJC)相互作用,从而被磷酸化并激活NMD。在此基础上,我们讨论了一个集成模型,其中,如果不能轻易发生PABPC1与eRF3的促终止相互作用,UPF1会终止翻译终止并被SMG1磷酸化。以UPF2或UPF3b作为辅助因子的EJC通过UPF1干扰生理终止。该模型整合了以前竞争的NMD模型,并为替代NMD途径提供了机理基础。

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