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ADAR2介导的腺苷到肌苷的编辑需要在GluR-B R/G位点形成三元复合物。

Adenosine to inosine editing by ADAR2 requires formation of a ternary complex on the GluR-B R/G site.

作者信息

Jaikaran Dominic C J, Collins Cynthia H, MacMillan Andrew M

机构信息

Department of Chemistry, University of Toronto, Toronto, Ontario M5S 3H6, Canada.

出版信息

J Biol Chem. 2002 Oct 4;277(40):37624-9. doi: 10.1074/jbc.M204126200. Epub 2002 Aug 5.

Abstract

RNA editing by members of the ADAR (adenosine deaminase that acts on RNA) enzyme family involves hydrolytic deamination of adenosine to inosine within the context of a double-stranded pre-mRNA substrate. Editing of the human GluR-B transcript is catalyzed by the enzyme ADAR2 at the Q/R and R/G sites. We have established a minimal RNA substrate for editing based on the R/G site and have characterized the interaction of ADAR2 with this RNA by gel shift, kinetic, and cross-linking analyses. Gel shift analysis revealed that two complexes are formed on the RNA as protein concentration is increased; the ADAR monomers can be cross-linked to one another in an RNA-dependent fashion. We performed a detailed kinetic study of the editing reaction; the data from this study are consistent with a reaction scheme in which formation of an ADAR2.RNA ternary complex is required for efficient RNA editing and in which formation of this complex is rate determining. These observations suggest that RNA adenosine deaminases function as homodimers on their RNA substrates and may partially explain regulation of RNA editing in these systems.

摘要

ADAR(作用于RNA的腺苷脱氨酶)酶家族成员进行的RNA编辑涉及在双链前体mRNA底物的背景下,将腺苷水解脱氨为肌苷。人GluR - B转录本的编辑由ADAR2酶在Q/R和R/G位点催化。我们基于R/G位点建立了一个用于编辑的最小RNA底物,并通过凝胶迁移、动力学和交联分析表征了ADAR2与该RNA的相互作用。凝胶迁移分析表明,随着蛋白质浓度的增加,RNA上形成了两种复合物;ADAR单体可以以RNA依赖的方式相互交联。我们对编辑反应进行了详细的动力学研究;该研究的数据与一个反应方案一致,在该方案中,高效RNA编辑需要形成ADAR2.RNA三元复合物,并且该复合物的形成是限速步骤。这些观察结果表明,RNA腺苷脱氨酶在其RNA底物上作为同二聚体发挥作用,这可能部分解释了这些系统中RNA编辑的调控机制。

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