首页> 外文期刊>Nucleic Acids Research >The RNA helicase Ddx5/p68 binds to hUpf3 and enhances NMD of Ddx17/p72 and Smg5 mRNA
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The RNA helicase Ddx5/p68 binds to hUpf3 and enhances NMD of Ddx17/p72 and Smg5 mRNA

机译:RNA解旋酶Ddx5 / p68与hUpf3结合并增强Ddx17 / p72和Smg5 mRNA的NMD

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Non-sense-mediated mRNA decay (NMD) is a mechanism of translation-dependent mRNA surveillance in eukaryotes: it degrades mRNAs with premature termination codons (PTCs) and contributes to cellular homeostasis by downregulating a number of physiologically important mRNAs. In the NMD pathway, Upf proteins, a set of conserved factors of which Upf1 is the central regulator, recruit decay enzymes to promote RNA cleavage. In mammals, the degradation of PTC-containing mRNAs is triggered by the exon-junction complex (EJC) through binding of its constituents Upf2 and Upf3 to Upf1. The complex formed eventually induces translational repression and recruitment of decay enzymes. Mechanisms by which physiological mRNAs are targeted by the NMD machinery in the absence of an EJC have been described but still are discussed controversially. Here, we report that the DEAD box proteins Ddx5/p68 and its paralog Ddx17/p72 also bind the Upf complex by physical interaction with Upf3, thereby interfering with the binding of EJC. By activating the NMD machinery, Ddx5 is shown to regulate the expression of its own, Ddx17 and Smg5 mRNAs. For NMD triggering, the adenosine triphosphate-binding activity of Ddx5 and the 3'-untranslated region of substrate mRNAs are essential.
机译:无义介导的mRNA衰变(NMD)是真核生物中依赖翻译的mRNA监测的一种机制:它通过过早终止密码子(PTC)降解mRNA,并通过下调许多生理学重要的mRNA来促进细胞稳态。在NMD途径中,Upf蛋白(一组保守因子,其中Upf1是中央调节因子)募集衰变酶来促进RNA裂解。在哺乳动物中,外显子连接复合物(EJC)通过其成分Upf2和Upf3与Upf1的结合触发含PTC的mRNA的降解。最终形成的复合物诱导翻译抑制和衰变酶的募集。已经描述了在不存在EJC的情况下NMD机制靶向生理mRNA的机制,但仍存在争议。在这里,我们报告说,DEAD框蛋白Ddx5 / p68及其旁系同源物Ddx17 / p72也通过与Upf3的物理相互作用结合了Upf复合物,从而干扰了EJC的结合。通过激活NMD机制,显示Ddx5调节其自身Ddx17和Smg5 mRNA的表达。对于NMD触发,Ddx5的三磷酸腺苷结合活性和底物mRNA的3'-非翻译区至关重要。

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