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miRNA 茎区碱基配对概率影响人类 A-to-I 编辑酶 ADAR1-p110 和 ADAR2 的结合和编辑特异性。

Base-pairing probability in the microRNA stem region affects the binding and editing specificity of human A-to-I editing enzymes ADAR1-p110 and ADAR2.

机构信息

a Department of Biological Sciences, Graduate School of Science , The University of Tokyo , Tokyo , Japan.

b Institute for Advanced Biosciences , Keio University , Tsuruoka , Japan.

出版信息

RNA Biol. 2018;15(7):976-989. doi: 10.1080/15476286.2018.1486658. Epub 2018 Jul 24.

Abstract

Adenosine deaminases acting on RNA (ADARs) catalyze the deamination of adenosine (A) to inosine (I). A-to-I RNA editing targets double-stranded RNA (dsRNA), and increases the complexity of gene regulation by modulating base pairing-dependent processes such as splicing, translation, and microRNA (miRNA)-mediated gene silencing. This study investigates the genome-wide binding preferences of the nuclear constitutive isoforms ADAR1-p110 and ADAR2 on human miRNA species by RNA immunoprecipitation of ADAR-bound small RNAs (RIP-seq). Our results suggest that secondary structure predicted by base-pairing probability in the mainly double-stranded region of a pre-miRNA or mature miRNA duplex may determine ADAR isoform preference for binding distinct subpopulations of miRNAs. Furthermore, we identify 31 unique editing sites with statistical significance, 19 sites of which are novel editing sites. Editing sites are enriched in the seed region responsible for target recognition by miRNAs, and isoform-specific nucleotide motifs in the immediate vicinity and opposite of editing sites are consistent with previous studies, and further reveal that ADAR2 may edit A/C bulges more frequently than ADAR1-p110 in the context of miRNA.

摘要

腺苷脱氨酶作用于 RNA(ADARs)可催化腺苷(A)脱氨为肌苷(I)。A 到 I 的 RNA 编辑靶向双链 RNA(dsRNA),并通过调节依赖碱基配对的过程(如剪接、翻译和 miRNA 介导的基因沉默)增加基因调控的复杂性。本研究通过 RNA 免疫沉淀结合小 RNA(RIP-seq)检测 ADAR 结合的小 RNA,研究了核组成型同工型 ADAR1-p110 和 ADAR2 在人类 miRNA 物种上的全基因组结合偏好性。我们的结果表明,在 miRNA 前体或成熟 miRNA 双链体的主要双链区域中基于碱基配对概率预测的二级结构可能决定 ADAR 同工型对结合不同 miRNA 亚群的偏好。此外,我们确定了 31 个具有统计学意义的独特编辑位点,其中 19 个是新的编辑位点。编辑位点富集在 miRNA 负责靶标识别的种子区域,编辑位点附近和相反位置的同工型特异性核苷酸基序与之前的研究一致,并进一步表明 ADAR2 可能比 ADAR1-p110 更频繁地在 miRNA 中编辑 A/C 凸起。

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