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首页> 外文期刊>Nucleic Acids Research >LARP4A recognizes polyA RNA via a novel binding mechanism mediated by disordered regions and involving the PAM2w motif, revealing interplay between PABP, LARP4A and mRNA
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LARP4A recognizes polyA RNA via a novel binding mechanism mediated by disordered regions and involving the PAM2w motif, revealing interplay between PABP, LARP4A and mRNA

机译:LARP4A通过由无序区域介导的新型结合机制识别POLYA RNA,并涉及PAM2W基序,揭示PABP,LARP4A和mRNA之间的相互作用

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摘要

LARP4A belongs to the ancient RNA-binding protein superfamily of La-related proteins (LARPs). In humans, it acts mainly by stabilizing mRNAs, enhancing translation and controlling polyA lengths of heterologous mRNAs. These activities are known to implicate its association with mRNA, protein partners and translating ribosomes, albeit molecular details are missing. Here, we characterize the direct interaction between LARP4A, oligoA RNA and the MLLE domain of the PolyA-binding protein (PABP). Our study shows that LARP4A-oligoA association entails novel RNA recognition features involving the N-terminal region of the protein that exists in a semi-disordered state and lacks any recognizable RNA-binding motif. Against expectations, we show that the La module, the conserved RNA-binding unit across LARPs, is not the principal determinant for oligoA interaction, only contributing to binding to a limited degree. Furthermore, the variant PABP-interacting motif 2 (PAM2w) featured in the N-terminal region of LARP4A was found to be important for both RNA and PABP recognition, revealing a new role for this protein-protein binding motif. Our analysis demonstrates the mutual exclusive nature of the PAM2w-mediated interactions, thereby unveiling a tantalizing interplay between LARP4A, polyA and PABP.
机译:LARP4A属于LA相关蛋白(LARP)的古代RNA结合蛋白超家族。在人类中,它主要通过稳定MRNA,增强翻译和控制异源MRNA的多重长度。已知这些活性涉及其与mRNA,蛋白质合作伙伴和翻译核糖体的关联,尽管分子细节缺失。这里,我们表征了碱碱碱(PABP)的Larp4a,寡核苷酸RNA和微小域之间的直接相互作用。我们的研究表明,Larp4a-oligoa关联需要涉及以半无序状态存在的蛋白质的N-末端区域的新型RNA识别特征,并且缺乏任何可识别的RNA结合基序。防止期望,我们表明,LA模块,跨越碱度的保守的RNA结合单元不是寡核苷酸相互作用的主要决定因素,只会有助于与有限程度结合。此外,发现在LARP4A的N-末端区域中的变体PABP相互作用基序(PAM2W)对于RNA和PABP识别,对该蛋白质结合基序的新作用揭示了该蛋白质蛋白质结合基序的新作用。我们的分析表明了PAM2W介导的相互作用的互异性,从而揭示了Larp4a,Polya和Pabp之间的诱发相互作用。

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  • 来源
    《Nucleic Acids Research》 |2019年第8期|共20页
  • 作者单位

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

    Francis Crick Inst MRC Biomed NMR Ctr London NW1 1AT England;

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

    Kings Coll London Dept Chem London SE1 1DB England;

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

    Kings Coll London Randall Ctr Cell &

    Mol Biophys London SE1 1UL England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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