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Structural basis for the recognition of transiently structured AU-rich elements by Roquin

机译:通过罗基因识别瞬时结构富裕的元素的结构基础

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摘要

Adenylate/uridylate-rich elements (AREs) are the most common cis-regulatory elements in the 3'-untranslated region (UTR) of mRNAs, where they fine-tune turnover by mediating mRNA decay. They increase plasticity and efficacy of mRNA regulation and are recognized by several ARE-specific RNA-binding proteins (RBPs). Typically, AREs are short linear motifs with a high content of complementary A and U nucleotides and often occur in multiple copies. Although thermodynamically rather unstable, the high AU-content might enable transient secondary structure formation and modify mRNA regulation by RBPs. We have recently suggested that the immunoregulatory RBP Roquin recognizes folded AREs as constitutive decay elements (CDEs), resulting in shape-specific ARE-mediated mRNA degradation. However, the structural evidence for a CDE-like recognition of AREs by Roquin is still lacking. We here present structures of CDE-like folded AREs, both in their free and protein-bound form. Moreover, the AREs in the UCP3 3'-UTR are additionally bound by the canonical ARE-binding protein AUF1 in their linear form, adopting an alternative binding-interface compared to the recognition of their CDE structure by Roquin. Strikingly, our findings thus suggest that AREs can be recognized in multiple ways, allowing control over mRNA regulation by adapting distinct conformational states, thus providing differential accessibility to regulatory RBPs.
机译:富含腺苷/富含亚胺酯的​​元素(ARES)是MRNA的3'-未旋转区域(UTR)中最常见的顺式调节元件,其中通过介导mRNA衰变来进行微调的周转。它们提高mRNA调节的可塑性和功效,并通过几种特异性RNA结合蛋白(RBPS)识别。通常,ARE是具有高含量的互补A和U核苷酸的短线性基序,并且通常在多个拷贝中发生。虽然热力学上相当不稳定,但高AU含量可能使瞬态二级结构形成并通过RBPS改变mRNA调节。我们最近建议免疫调节RBP Roquin认识到折叠的ARES作为本构腐烂元素(CDES),导致形状特异性的介导的mRNA降解。然而,罗基因的CDE样识别的结构证据仍然缺乏。我们在这里将CDE样折叠曲面的结构存在于自由和蛋白质染色的形式中。此外,UCP3 3'-UTR中的ARES在其线性形式的同时均结合蛋白AUF1另外地与其线性形式结合,与通过Roquin的CDE结构识别相比,采用另一种结合界面。引人注目的是,我们的研究结果表明,ARE可以通过多种方式识别,允许通过调整不同的构象状态来控制mRNA调节,从而为调节RBP提供差异可访问性。

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  • 来源
    《Nucleic Acids Research》 |2020年第13期|共19页
  • 作者单位

    Goethe Univ Frankfurt Inst Organ Chem &

    Chem Biol D-60438 Frankfurt Germany;

    Ctr Biomol Magnet Resonance BMRZ D-60438 Frankfurt Germany;

    Tech Univ Darmstadt Dept Biol D-64287 Darmstadt Germany;

    Helmholtz Zentrum Munchen Inst Struct Biol D-85764 Neuherberg Germany;

    Helmholtz Zentrum Munchen Inst Struct Biol D-85764 Neuherberg Germany;

    Tech Univ Darmstadt Dept Biol D-64287 Darmstadt Germany;

    Helmholtz Zentrum Munchen Inst Struct Biol D-85764 Neuherberg Germany;

    Goethe Univ Frankfurt Inst Organ Chem &

    Chem Biol D-60438 Frankfurt Germany;

    Tech Univ Darmstadt Dept Biol D-64287 Darmstadt Germany;

    Ctr Biomol Magnet Resonance BMRZ D-60438 Frankfurt Germany;

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