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SMG7是无义介导的mRNA降解途径中的一种类14-3-3衔接蛋白。

SMG7 is a 14-3-3-like adaptor in the nonsense-mediated mRNA decay pathway.

作者信息

Fukuhara Noemi, Ebert Judith, Unterholzner Leonie, Lindner Doris, Izaurralde Elisa, Conti Elena

机构信息

European Molecular Biology Laboratory, Meyerhofstrasse 1, D-69117 Heidelberg, Germany.

出版信息

Mol Cell. 2005 Feb 18;17(4):537-47. doi: 10.1016/j.molcel.2005.01.010.

Abstract

In metazoa, regulation of the phosphorylation state of UPF1 is crucial for nonsense-mediated mRNA decay (NMD), a process by which aberrant mRNAs containing nonsense mutations are degraded. UPF1 is targeted for dephosphorylation by three related proteins, SMG5, SMG6, and SMG7. We report here the crystal structure of the N-terminal domain of SMG7. The structure reveals that SMG7 contains a 14-3-3-like domain. Residues that bind phosphoserine-containing peptides in 14-3-3 are conserved at the equivalent positions in SMG7. Mutation of these residues impairs UPF1 binding to SMG7 in vitro and UPF1 recruitment to cytoplasmic mRNA decay foci in vivo, suggesting that SMG7 acts as an adaptor in targeting mRNAs associated with phosphorylated UPF1 for degradation. The 14-3-3 site of SMG7 is conserved in SMG5 and SMG6. These data also imply that the homologous human Est1 might have a 14-3-3 function at telomeres, and that phosphorylation events may be important for telomerase regulation.

摘要

在多细胞动物中,UPF1磷酸化状态的调节对于无义介导的mRNA降解(NMD)至关重要,这是一个包含无义突变的异常mRNA被降解的过程。UPF1可被三种相关蛋白SMG5、SMG6和SMG7靶向去磷酸化。我们在此报告了SMG7 N端结构域的晶体结构。该结构显示SMG7包含一个类14-3-3结构域。在14-3-3中结合含磷酸丝氨酸肽段的残基在SMG7的等效位置保守。这些残基的突变在体外损害了UPF1与SMG7的结合以及在体内损害了UPF1募集到细胞质mRNA降解位点,这表明SMG7作为一种衔接蛋白,将与磷酸化UPF1相关的mRNA靶向降解。SMG7的14-3-3位点在SMG5和SMG6中保守。这些数据还暗示同源的人类Est1可能在端粒处具有14-3-3功能,并且磷酸化事件可能对端粒酶调节很重要。

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