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An unusual arrangement of two 14-3-3-like domains in the SMG5–SMG7 heterodimer is required for efficient nonsense-mediated mRNA decay

机译:SMG5–SMG7异二聚体中两个14-3-3-样结构域的异常排列是有效的无义介导的mRNA降解所必需的

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摘要

The nonsense-mediated mRNA decay (NMD) pathway triggers the rapid degradation of aberrant mRNAs containing premature translation termination codons (PTCs). In metazoans, NMD requires three 14-3-3-like proteins: SMG5, SMG6, and SMG7. These proteins are recruited to PTC-containing mRNAs through the interaction of their 14-3-3-like domains with phosphorylated UPF1, the central NMD effector. Recruitment of SMG5, SMG6, and SMG7 causes NMD target degradation. In this study, we report the crystal structure of the Caenorhabditis elegans SMG5–SMG7 complex. The 14-3-3-like phosphopeptide recognition domains of SMG5 and SMG7 heterodimerize in an unusual perpendicular back-to-back orientation in which the peptide-binding sites face opposite directions. Structure-based mutants and functional assays indicate that the SMG5–SMG7 interaction is conserved and is crucial for efficient NMD in human cells. Notably, we demonstrate that heterodimerization increases the affinity of the SMG5–SMG7 complex for UPF1. Furthermore, we show that the degradative activity of the SMG5–SMG7 complex resides in SMG7 and that the SMG5–SMG7 complex and SMG6 play partially redundant roles in the degradation of aberrant mRNAs. We propose that the SMG5–SMG7 complex binds to phosphorylated UPF1 with high affinity and recruits decay factors to the mRNA target through SMG7, thus promoting target degradation.
机译:无意义介导的mRNA衰变(NMD)途径触发包含过早翻译终止密码子(PTC)的异常mRNA的快速降解。在后生动物中,NMD需要三种14-3-3-like蛋白:SMG5,SMG6和SMG7。这些蛋白质通过其14-3-3-like域与磷酸化的UPF1(中央NMD效应子)的相互作用而被募集到含PTC的mRNA中。招募SMG5,SMG6和SMG7会导致NMD目标降级。在这项研究中,我们报告了秀丽隐杆线虫SMG5-SMG7复合物的晶体结构。 SMG5和SMG7的14-3-3-like磷酸肽识别域以不寻常的垂直背靠背方向异二聚,其中肽结合位点面向相反的方向。基于结构的突变体和功能分析表明,SMG5-SMG7相互作用是保守的,对于人类细胞中有效的NMD至关重要。值得注意的是,我们证明了异二聚化作用提高了SMG5-SMG7复合物对UPF1的亲和力。此外,我们表明,SMG5-SMG7复合物的降解活性存在于SMG7中,而SMG5-SMG7复合物和SMG6在异常mRNA的降解中起部分冗余的作用。我们建议SMG5-SMG7复合物以高亲和力结合磷酸化的UPF1,并通过SMG7将衰变因子募集到mRNA靶标,从而促进靶标降解。

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