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U6atac 核酶茎环与 U12 p65 RNA 结合蛋白相互作用,并且在功能上可与 U12 顶端茎环 III 互换。

U6atac snRNA stem-loop interacts with U12 p65 RNA binding protein and is functionally interchangeable with the U12 apical stem-loop III.

机构信息

Center for Gene Regulation in Health and Disease, Cleveland State University, Cleveland, OH 44115, USA.

Department of Biological Sciences, Cleveland State University, Cleveland, OH 44115, USA.

出版信息

Sci Rep. 2016 Aug 11;6:31393. doi: 10.1038/srep31393.

Abstract

Formation of catalytic core of the U12-dependent spliceosome involves U6atac and U12 interaction with the 5' splice site and branch site regions of a U12-dependent intron, respectively. Beyond the formation of intermolecular helix I region between U6atac and U12 snRNAs, several other regions within these RNA molecules are predicted to form stem-loop structures. Our previous work demonstrated that the 3' stem-loop region of U6atac snRNA contains a U12-dependent spliceosome-specific targeting activity. Here, we show a detailed structure-function analysis and requirement of a substructure of U6atac 3' stem-loop in U12-dependent in vivo splicing. We show that the C-terminal RNA recognition motif of p65, a U12 snRNA binding protein, also binds to the distal 3' stem-loop of U6atac. By using a binary splice site mutation suppressor assay we demonstrate that p65 protein-binding apical stem-loop of U12 snRNA can be replaced by this U6atac distal 3' stem-loop. Furthermore, we tested the compatibility of the U6atac 3' end from phylogenetically distant species in a human U6atac background, to establish the evolutionary relatedness of these structures and in vivo function. In summary, we demonstrate that RNA-RNA and RNA-protein interactions in the minor spliceosome are highly plastic as compared to the major spliceosome.

摘要

U12 依赖性剪接体催化核心的形成分别涉及 U6atac 和 U12 与 U12 依赖性内含子的 5'剪接位点和分支位点区域的相互作用。除了 U6atac 和 U12 snRNA 之间形成分子间的 I 区螺旋外,这些 RNA 分子中的几个其他区域预计形成茎环结构。我们之前的工作表明,U6atac snRNA 的 3'茎环区域含有 U12 依赖性剪接体特异性靶向活性。在这里,我们展示了详细的结构功能分析以及 U6atac 3'茎环在 U12 依赖性体内剪接中的亚结构要求。我们表明,U12 snRNA 结合蛋白 p65 的 C 末端 RNA 识别基序也与 U6atac 的远端 3'茎环结合。通过使用二元剪接位点突变抑制测定,我们证明 p65 蛋白结合的 U12 snRNA 顶端茎环可以被该 U6atac 远端 3'茎环取代。此外,我们测试了来自系统发育上不同物种的 U6atac 3'端在人 U6atac 背景下的兼容性,以建立这些结构和体内功能的进化相关性。总之,我们证明与主要剪接体相比,小剪接体中的 RNA-RNA 和 RNA-蛋白质相互作用具有更高的可塑性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5231/4980772/913fbd587a63/srep31393-f1.jpg

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