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KREPA4 的 OB 折叠结构域介导与向导 RNA 的高亲和力相互作用,并具有退火活性。

OB-fold domain of KREPA4 mediates high-affinity interaction with guide RNA and possesses annealing activity.

机构信息

Institute of Parasitology, McGill University, Ste. Anne de Bellevue, Quebec, Canada.

出版信息

RNA. 2010 Oct;16(10):1951-67. doi: 10.1261/rna.2124610. Epub 2010 Aug 16.

Abstract

KREPA4, also called MP24, is an essential mitochondrial guide RNA (gRNA)-binding protein with a preference for the 3' oligo(U) tail in trypanosomes. Structural prediction and compositional analysis of KREPA4 have identified a conserved OB (oligonucleotide/oligosaccharide-binding)-fold at the C-terminal end and two low compositional complexity regions (LCRs) at its N terminus. Concurrent with these predictions, one or both of these regions in KREPA4 protein may be involved in gRNA binding. To test this possibility, deletion mutants of KREPA4 were made and the effects on the gRNA-binding affinities were measured by quantitative electrophoretic mobility shift assays. The gRNA-binding specificities of these mutants were evaluated by competition experiments using gRNAs with U-tail deletions or stem-loop modifications and uridylated nonguide RNAs or heterologous RNA. Our results identified the predicted OB-fold as the functional domain of KREPA4 that mediates a high-affinity interaction with the gRNA oligo(U) tail. An additional contribution toward RNA-binding function was localized to LCRs that further stabilize the binding through sequence-specific interactions with the guide secondary structure. In this study we also found that the predicted OB-fold has an RNA annealing activity, representing the first report of such activity for a core component of the RNA editing complex.

摘要

KREPA4,也称为 MP24,是一种必需的线粒体指导 RNA(gRNA)结合蛋白,在原生动物中对 3'寡聚(U)尾具有偏好性。KREPA4 的结构预测和组成分析在其 C 末端识别出一个保守的 OB(寡核苷酸/寡糖结合)折叠,在其 N 末端识别出两个低组成复杂性区域(LCRs)。与这些预测一致,KREPA4 蛋白的这两个区域之一或两者可能都参与 gRNA 结合。为了验证这种可能性,我们构建了 KREPA4 的缺失突变体,并通过定量电泳迁移率变动分析测量了它们对 gRNA 结合亲和力的影响。通过使用具有 U 尾缺失或茎环修饰以及尿苷化非指导 RNA 或异源 RNA 的 gRNA 竞争实验,评估了这些突变体的 gRNA 结合特异性。我们的结果确定了预测的 OB 折叠作为 KREPA4 的功能域,介导与 gRNA 寡聚(U)尾的高亲和力相互作用。对 RNA 结合功能的额外贡献定位于 LCRs,通过与指导二级结构的序列特异性相互作用进一步稳定结合。在这项研究中,我们还发现预测的 OB 折叠具有 RNA 退火活性,这代表 RNA 编辑复合物核心成分的此类活性的首次报道。

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