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Molecular simulations of the pistol ribozyme: unifying the interpretation of experimental data and establishing functional links with the hammerhead ribozyme

机译:手枪核酶的分子模拟:统一实验数据的解释并与锤头核核酶建立功能联系

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摘要

The pistol ribozyme (Psr) is among the most recently discovered RNA enzymes and has been the subject of experiments aimed at elucidating the mechanism. Recent biochemical studies have revealed exciting clues about catalytic interactions in the active site not apparent from available crystallographic data. The present work unifies the interpretation of the existing body of structural and functional data on Psr by providing a dynamical model for the catalytically active state in solution from molecular simulation. Our results suggest that a catalytic Mg2+ ion makes inner-sphere contact with G33:N7 and outer-sphere coordination to the pro-RP of the scissile phosphate, promoting electrostatic stabilization of the dianionic transition state and neutralization of the developing charge of the leaving group through a metal-coordinated water molecule that is made more acidic by a hydrogen bond donated from the 2′OH of P32. This model is consistent with experimental activity-pH and mutagenesis data, including sensitivity to G33(7cG) and phosphorothioate substitution/metal ion rescue. The model suggests several experimentally testable predictions, including the response of cleavage activity to mutations at G42 and P32 positions in the ribozyme, and thio substitutions of the substrate in the presence of different divalent metal ions. Further, the model identifies striking similarities of Psr to the hammerhead ribozyme (HHr), including similar global fold, organization of secondary structure around an active site three-way junction, catalytic metal ion binding mode, and guanine general base. However, the specific binding mode and role of the Mg2+ ion, as well as a conserved 2′-OH in the active site, are interrelated but subtly different between the ribozymes.
机译:手枪核酶(PSR)是最近发现的RNA酶之一,并且是旨在阐明该机制的实验的主题。最近的生化研究揭示了来自可用晶体数据的活性位点中的催化相互作用的激动的线索。本作者通过在分子模拟中提供催化活性状态的动态模型来统一对PSR的现有结构和功能数据的解释。我们的结果表明,催化Mg2 +离子使内球与G33:N7和外球形配制与股磷酸盐的Pro-Rp接触,促进Dianionic过渡状态的静电稳定和中和离去基团的发育电荷通过金属协调的水分子,通过从P32的2'OH捐赠的氢键制成更多酸性。该模型与实验活性-PH和诱变数据一致,包括对G33(7cg)和硫代磷酸酯替代/金属离子救援的敏感性。该模型表明了几种实验可测试的预测,包括在不同二金属离子存在下在核酶中的G42和P32位置的裂解活性与G42和P32位置的突变的响应。此外,该模型将PSR的醒目相似识别到锤头核酶(HHR),包括类似的全球折叠,围绕有源部位三通结,催化金属离子结合模式和鸟嘌呤一般基础组织的二次结构组织。然而,在活性位点中的特异性结合模式和Mg2 +离子以及保守的2'-OH的作用是相互关联的,但在核酶之间巧妙地不同。

著录项

  • 期刊名称 RNA
  • 作者单位
  • 年(卷),期 2019(25),11
  • 年度 2019
  • 页码 1439–1456
  • 总页数 18
  • 原文格式 PDF
  • 正文语种
  • 中图分类 分子生物学;
  • 关键词

    机译:手枪核酶;RNA催化;分子动力学;金属结合;催化策略;

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