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Structural investigation of RNA-RNA and RNA-protein interactions involving the pre-mRNA branch site region of the functional core of the spliceosome .

机译:RNA-RNA和RNA-蛋白质相互作用的结构研究涉及剪接体功能核心的前-mRNA分支位点区域。

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摘要

The removal of introns from precursor-messenger (pre-m)RNA in eukaryotes is mediated by the spliceosome, a dynamic supramolecular complex comprising five small nuclear (sn)RNAs and numerous proteins, organized into small ribonucleoprotein (snRNP) particles. At the functional center of the spliceosome is the pairing of a highly conserved region of the RNA intron and the U2 snRNA, called the pre-mRNA branch site duplex, and two U2 snRNP proteins, p14 and SF3b155. The goal of the research described in this dissertation was to characterize the interaction between p14 and the branch site RNA, and determine whether SF3b155 impacts on that interaction.;In order to refine the structure of the pairing between the intron and pseudouridine (Psi)-modified U2 snRNA (M. I. Newby and N. L. Greenbaum, 2001 RNA 7; 833-845), Nuclear Magnetic Resonance (NMR) experiments were performed in supercooled water in order to decrease the temperature-dependent exchange of protons in RNA duplexes. NMR spectra of aqueous samples of RNA in bundles of narrow capillaries acquired at temperatures as low as -18°C reveal resonances of exchangeable protons not seen at higher temperatures. In particular, we detected the imino protons of terminal base pairs and the imino proton of a non-base paired Psi in the pre-mRNA branch site helix. Analysis of the temperature dependence of chemical shift changes (thermal coefficients) for imino protons corroborated hydrogen bonding patterns observed in the NMR derived structural model of the branch site helix. The ability to observe non-base paired imino protons of RNA loop and bulge regions is of significant value in refining the structure of RNA motifs containing non-base paired regions. Also, detection of the imino proton of the non-base paired Psi will help identify this resonance when p14 is added.;As measures of affinity between p14 and branch site RNA, membrane filtration and gel electrophoresis methods indicated that the U2 snRNP protein p14 binds a single-stranded RNA representing the pre-mRNA intron in solution; however, affinity is significantly greater when the intron is paired with a U2 snRNA strand modified by Psi in its phylogenetically conserved location opposite the branch site residue. The binding between p14 and its cognate RNA is enhanced further upon addition of a segment of the neighboring protein SF3b155 that contacts p14 but not the RNA. NMR spectra reveal that p14 undergoes significant changes upon complex formation with both the pre-mRNA branch site duplex and SF3b155, in contrast, the RNA does not undergo any marked change, and changes in SF3b155 are limited to specific regions. These data imply that the three components (pre-mRNA branch site duplex, p14, and SF3b155) interact with each other under equilibrium conditions, and that SF3b155 facilitates the p14-RNA interaction. These results demonstrate, for the first time, specific recognition of a double-stranded RNA motif by an RNA Recognition Motif (RRM) protein, and suggest a cooperative mechanism for assembly of the pre-mRNA, U2 snRNA, p14 and SF3b155.
机译:真核生物中前体信使(pre-m)RNA内含子的去除是由剪接体介导的,剪接体是一种动态的超分子复合物,由五个小核(sn)RNA和许多蛋白质组成,被组织成小的核糖核蛋白(snRNP)颗粒。在剪接体的功能中心是RNA内含子和U2 snRNA的高度保守区域(称为前mRNA分支位点双链体)与两个U2 snRNP蛋白(p14和SF3b155)配对。本论文描述的研究目的是表征p14与分支位点RNA之间的相互作用,并确定SF3b155是否对该相互作用产生影响。为了完善内含子与假尿苷(Psi)之间的配对结构,在过冷水中进行了修饰的U2 snRNA(MI Newby和NL Greenbaum,2001 RNA 7; 833-845),核磁共振(NMR)实验,以减少RNA双链体中质子的温度依赖性交换。在低至-18°C的温度下采集的狭窄毛细管束中的RNA水溶液样品的NMR光谱显示,在较高温度下看不到可交换质子的共振。特别是,我们检测到前mRNA分支位点螺旋中末端碱基对的亚氨基质子和非碱基配对的Psi的亚氨基质子。对亚氨基质子化学位移变化(温度系数)的温度依赖性进行分析,证实了在NMR衍生的分支位点螺旋结构模型中观察到的氢键模式。观察RNA环和凸起区域的非碱基配对亚氨基质子的能力在完善包含非碱基配对区域的RNA基序的结构中具有重要价值。同样,检测非碱基配对的Psi的亚氨基质子将有助于在添加p14时识别该共振。;作为p14与分支位点RNA之间亲和力的量度,膜过滤和凝胶电泳方法表明U2 snRNP蛋白p14结合溶液中代表前mRNA内含子的单链RNA;但是,当内含子与Psi修饰的U2 snRNA链在与分支位点残基相对的系统发育保守位置配对时,亲和力会更大。通过添加与p14而非RNA接触的相邻蛋白SF3b155的片段,p14及其同源RNA之间的结合进一步增强。 NMR光谱显示,与前mRNA分支位点双链体和SF3b155形成复合物后,p14发生了显着变化,相反,RNA没有经历任何明显的变化,并且SF3b155的变化仅限于特定区域。这些数据暗示这三个成分(mRNA前分支双链体,p14和SF3b155)在平衡条件下相互作用,并且SF3b155促进了p14-RNA相互作用。这些结果首次证明了RNA识别基序(RRM)蛋白对双链RNA基序的特异性识别,并提出了前mRNA,U2 snRNA,p14和SF3b155组装的协同机制。

著录项

  • 作者

    Schroeder, Kersten T.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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