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通过肌苷特异性切割检测信使核糖核酸中的肌苷

Detection of inosine in messenger RNA by inosine-specific cleavage.

作者信息

Morse D P, Bass B L

机构信息

Department of Biochemistry & Howard Hughes Medical Institute, 50 North Medical Drive, University of Utah, Salt Lake City, Utah 84132, USA.

出版信息

Biochemistry. 1997 Jul 15;36(28):8429-34. doi: 10.1021/bi9709607.

Abstract

Double-stranded RNA adenosine deaminases catalyze the conversion of adenosine to inosine within double-stranded RNA. A few candidate biological substrates for these enzymes have been discovered by noticing discrepancies between genomic and cDNA sequences. Toward the goal of finding a systematic approach to identify new deaminase substrates, we developed a method to cleave RNA specifically after inosine and an amplification strategy to identify the cleavage sites. We tested our method on a candidate substrate, the messenger RNA for glutamate receptor subunit B (GluR-B). We detected cleavage of the endogenous GluR-B message from rat brain at two known RNA editing sites, thus providing the first direct evidence for the presence of inosine at these sites. The described method will facilitate the mapping of inosines within RNA and, most importantly, will provide a way to identify new deaminase substrates.

摘要

双链RNA腺苷脱氨酶催化双链RNA中的腺苷向肌苷的转化。通过注意基因组和cDNA序列之间的差异,已经发现了这些酶的一些候选生物学底物。为了找到一种系统的方法来鉴定新的脱氨酶底物,我们开发了一种在肌苷后特异性切割RNA的方法和一种鉴定切割位点的扩增策略。我们在候选底物——谷氨酸受体亚基B(GluR-B)的信使RNA上测试了我们的方法。我们在两个已知的RNA编辑位点检测到了大鼠脑组织中内源性GluR-B信使RNA的切割,从而为这些位点存在肌苷提供了首个直接证据。所描述的方法将有助于绘制RNA中的肌苷图谱,最重要的是,将提供一种鉴定新的脱氨酶底物的方法。

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