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新型A到I编辑位点的编辑因子鉴定

Determination of editors at the novel A-to-I editing positions.

作者信息

Nishimoto Yoshinori, Yamashita Takenari, Hideyama Takuto, Tsuji Shoji, Suzuki Norihiro, Kwak Shin

机构信息

Department of Neurology, Graduate School of Medicine, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8655, Japan.

出版信息

Neurosci Res. 2008 Jun;61(2):201-6. doi: 10.1016/j.neures.2008.02.009. Epub 2008 Mar 13.

Abstract

A-to-I RNA editing modifies a variety of biologically important mRNAs, and is specifically catalyzed by either adenosine deaminase acting on RNA type 1 (ADAR1) or type 2 (ADAR2) in mammals including human. Recently several novel A-to-I editing sites were identified in mRNAs abundantly expressed in mammalian organs by means of computational genomic analysis, but which enzyme catalyzes these editing sites has not been determined. Using RNA interference (RNAi) knockdowns, we found that cytoplasmic fragile X mental retardation protein interacting protein 2 (CYFIP2) mRNA had an ADAR2-mediated editing position and bladder cancer associated protein (BLCAP) mRNA had an ADAR1-mediated editing position. In addition, we found that ADAR2 forms a complex with mRNAs with ADAR2-mediated editing positions including GluR2, kv1.1 and CYFIP2 mRNAs, particularly when the editing sites were edited in human cerebellum by means of immunoprecipitation (IP) method. CYFIP2 mRNA was ubiquitously expressed in human tissues with variable extents of K/E site editing. Because ADAR2 underactivity may be a causative molecular change of death of motor neurons in sporadic amyotrophic lateral sclerosis (ALS), this newly identified ADAR2-mediated editing position may become a useful tool for ALS research.

摘要

A-to-I RNA编辑可修饰多种具有生物学重要性的mRNA,在包括人类在内的哺乳动物中,该编辑过程由作用于1型RNA(ADAR1)或2型RNA(ADAR2)的腺苷脱氨酶特异性催化。最近,通过计算基因组分析在哺乳动物器官中大量表达的mRNA中鉴定出了几个新的A-to-I编辑位点,但尚未确定是哪种酶催化这些编辑位点。通过RNA干扰(RNAi)敲低技术,我们发现细胞质脆性X智力低下蛋白相互作用蛋白2(CYFIP2)mRNA有一个由ADAR2介导的编辑位点,而膀胱癌相关蛋白(BLCAP)mRNA有一个由ADAR1介导的编辑位点。此外,我们发现ADAR2与具有ADAR2介导编辑位点的mRNA形成复合物,这些mRNA包括GluR2、kv1.1和CYFIP2 mRNA,特别是当通过免疫沉淀(IP)方法在人小脑中对编辑位点进行编辑时。CYFIP2 mRNA在人体组织中普遍表达,K/E位点编辑程度各异。由于ADAR2活性不足可能是散发性肌萎缩侧索硬化症(ALS)运动神经元死亡的致病分子变化,这个新发现的由ADAR2介导的编辑位点可能成为ALS研究的有用工具。

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