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无蛋白质的人 U2-U6 snRNA 复合物折叠拓扑结构中的中央连接点的作用。

Role of the central junction in folding topology of the protein-free human U2-U6 snRNA complex.

机构信息

Department of Chemistry, Hunter College of the City University of New York, New York, New York 10065, USA.

Ph.D. Program in Chemistry, The Graduate Center of the City University of New York, New York, New York 10016, USA.

出版信息

RNA. 2020 Jul;26(7):836-850. doi: 10.1261/rna.073379.119. Epub 2020 Mar 27.

Abstract

U2 and U6 small nuclear (sn)RNAs are the only snRNAs directly implicated in catalyzing the splicing of pre-mRNA, but assembly and rearrangement steps prior to catalysis require numerous proteins. Previous studies have shown that the protein-free U2-U6 snRNA complex adopts two conformations in equilibrium, characterized by four and three helices surrounding a central junction. The four-helix conformer is strongly favored in the in vitro protein-free state, but the three-helix conformer predominates in spliceosomes. To analyze the role of the central junction in positioning elements forming the active site, we derived three-dimensional models of the two conformations from distances measured between fluorophores at selected locations in constructs representing the protein-free human U2-U6 snRNA complex by time-resolved fluorescence resonance energy transfer. Data describing four angles in the four-helix conformer suggest tetrahedral geometry; addition of Mg results in shortening of the distances between neighboring helices, indicating compaction of the complex around the junction. In contrast, the three-helix conformer shows a closer approach between helices bearing critical elements, but the addition of Mg widens the distance between them; thus in neither conformer are the critical helices positioned to favor the proposed triplex interaction. The presence of Mg also enhances the fraction of the three-helix conformer, as does incubation with the Prp19-related protein RBM22, which has been implicated in the remodeling of the U2-U6 snRNA complex to render it catalytically active. These data suggest that although the central junction assumes a significant role in orienting helices, spliceosomal proteins and Mg facilitate formation of the catalytically active conformer.

摘要

U2 和 U6 小核(sn)RNAs 是唯一直接参与催化前体 mRNA 剪接的 snRNAs,但在催化之前,组装和重排步骤需要许多蛋白质。先前的研究表明,无蛋白的 U2-U6 snRNA 复合物在平衡中采用两种构象,其特征是围绕中央连接点的四个和三个螺旋。在无蛋白的体外状态下,四螺旋构象强烈占优势,但三螺旋构象在剪接体中占主导地位。为了分析中央连接点在定位形成活性位点的元件中的作用,我们通过时间分辨荧光共振能量转移测量在代表无蛋白人 U2-U6 snRNA 复合物的构建体中选择位置的荧光团之间的距离,从两种构象导出三维模型。描述四螺旋构象中的四个角度的数据表明四面体几何形状;添加 Mg 会导致相邻螺旋之间的距离缩短,表明复合物在连接点周围的紧凑化。相比之下,三螺旋构象显示出关键元件承载的螺旋之间更接近,但添加 Mg 会扩大它们之间的距离;因此,在两种构象中,关键螺旋都没有定位以有利于所提出的三链相互作用。Mg 的存在也会增加三螺旋构象的比例,与 Prp19 相关蛋白 RBM22 的孵育也是如此,RBM22 已被牵连到 U2-U6 snRNA 复合物的重塑以使其具有催化活性。这些数据表明,尽管中央连接点在定向螺旋方面起着重要作用,但剪接体蛋白和 Mg 有助于形成催化活性构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4f0/7297123/c3fe94014de6/836f01A.jpg

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