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Conserved structures formed by heterogeneous RNA sequences drive silencing of an inflammation responsive post-transcriptional operon

机译:由异质RNA序列形成的保守结构驱使响应炎症后转录术后操纵子的沉默

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摘要

RNA-protein interactions with physiological outcomes usually rely on conserved sequences within the RNA element. By contrast, activity of the diverse gamma-interferon-activated inhibitor of translation (GAIT)-elements relies on the conserved RNA folding motifs rather than the conserved sequence motifs. These elements drive the translational silencing of a group of chemokine (CC/CXC) and chemokine receptor (CCR) mRNAs, thereby helping to resolve physiological inflammation. Despite sequence dissimilarity, these RNA elements adopt common secondary structures (as revealed by 2D-H-1 NMR spectroscopy), providing a basis for their interaction with the RNA-binding GAIT complex. However, many of these elements (e.g. those derived from CCL22, CXCL13, CCR4 and ceruloplasmin (Cp) mRNAs) have substantially different affinities for GAIT complex binding. Toeprinting analysis shows that different positions within the overall conserved GAIT element structure contribute to differential affinities of the GAIT protein complex towards the elements. Thus, heterogeneity of GAIT elements may provide hierarchical fine-tuning of the resolution of inflammation.
机译:用生理结果RNA-蛋白质相互作用通常依赖于RNA元件内的保守序列。相比之下,不同γ-干扰素激活的翻译(步态)的活性的活性依赖于保守的RNA折叠基序而不是保守的序列图。这些元素驱动了一组趋化因子(CC / CXC)和趋化因子受体(CCR)mRNA的平移沉默,从而有助于解决生理炎症。尽管序列相似,但这些RNA元素采用常见的二次结构(如2d-H-1 NMR光谱透露),为其与RNA结合步态复合物的相互作用提供基础。然而,许多这些元素(例如,来自CCL22,CXCL13,CCR4和刺肌素(CP)mRNA的那些元素具有基本上不同的步态复合结合的亲和力。封印分析表明,整个保守的步态元素结构内的不同位置有助于朝向元素的步态蛋白质复合物的差异亲和力。因此,步态元素的异质性可以提供分离炎症的分层微调。

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  • 来源
    《Nucleic Acids Research》 |2017年第22期|共17页
  • 作者单位

    Cleveland State Univ Ctr Gene Regulat Hlth &

    Dis Dept Biol Geol &

    Environm Sci 2121 Euclid Ave Cleveland OH 44115 USA;

    Case Western Reserve Univ Dept Chem Cleveland OH 44106 USA;

    Case Western Reserve Univ Dept Chem Cleveland OH 44106 USA;

    Cleveland State Univ Ctr Gene Regulat Hlth &

    Dis Dept Biol Geol &

    Environm Sci 2121 Euclid Ave Cleveland OH 44115 USA;

    Cleveland State Univ Ctr Gene Regulat Hlth &

    Dis Dept Biol Geol &

    Environm Sci 2121 Euclid Ave Cleveland OH 44115 USA;

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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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