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Characterization of the structure, function, and mechanism of B2 RNA, an ncRNA repressor of RNA polymerase II transcription

机译:B2 RNA(RNA聚合酶II转录的ncRNA阻遏物)的结构,功能和机制的表征

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We previously found that the SINE-encoded mouse B2 RNA binds RNA polymerase II and represses mRNA transcription during the cellular heat-shock response. In vitro B2 RNA assembles into preinitiation complexes on promoter DNA via its interaction with the polymerase, thus rendering the complexes inactive. With the goal of understanding which regions of B2 RNA are important for high-affinity binding to RNA polymerase II and repression of transcription, we performed a structural and deletion analysis of a 178 nucleotide (nt) B2 RNA. We describe an experimentally derived secondary structure model for B2 RNA, and show that RNA polymerase II protects a specific region from RNase digestion. Deletion studies revealed that a 51-nt region of B2 RNA is sufficient for high-affinity binding to RNA polymerase II, association with preinitiation complexes, and repression of transcription in vitro, the latter of which involves a large predominately single-stranded region within the RNA. In addition, this piece of B2 RNA blocked the polymerase from properly associating with template DNA during the assembly of elongation complexes. Further deletion revealed that a 33-nt piece of B2 RNA binds RNA polymerase II, associates with preinitiation complexes, but cannot repress transcription. These results support a model in which RNA polymerase II contains a high-affinity ncRNA docking site to which a distinct region of B2 RNA binds, thereby allowing another region of the RNA to repress transcription. Moreover, the mechanism of transcriptional repression by B2 RNA likely involves disrupting critical contacts between RNA polymerase II and the promoter DNA.
机译:我们以前发现SINE编码的小鼠B2 RNA结合RNA聚合酶II,并在细胞热休克反应期间抑制mRNA转录。体外B2 RNA通过与聚合酶的相互作用在启动子DNA上组装成预起始复合物,从而使复合物失去活性。为了了解B2 RNA的哪些区域对于与RNA聚合酶II的高亲和力结合和转录抑制很重要,我们进行了178个核苷酸(nt)B2 RNA的结构和缺失分析。我们描述了B2 RNA的实验得出的二级结构模型,并显示RNA聚合酶II保护特定区域免受RNase消化。缺失研究表明,B2 RNA的51个核苷酸区域足以与RNA聚合酶II高亲和力结合,与预起始复合物缔合并在体外抑制转录,后者在体外涉及一个大的单链区域。 RNA。另外,在延伸复合物的组装过程中,这条B2 RNA阻止聚合酶与模板DNA正确结合。进一步的删除显示33 nt的B2 RNA片段与RNA聚合酶II结合,与预起始复合物缔合,但不能抑制转录。这些结果支持了一个模型,其中RNA聚合酶II包含一个高亲和力ncRNA停靠位点,B2 RNA的不同区域与该位点结合,从而允许RNA的另一个区域阻遏转录。此外,B2 RNA抑制转录的机制可能涉及破坏RNA聚合酶II与启动子DNA之间的关键接触。

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