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双链RNA特异性腺苷脱氨酶:核酸结合特性

Double-stranded RNA-specific adenosine deaminase: nucleic acid binding properties.

作者信息

Liu Y, Herbert A, Rich A, Samuel C E

机构信息

Department of Molecular, Cellular and Developmental Biology, University of California, Santa Barbara, Santa Barbara, California, 93106, USA.

出版信息

Methods. 1998 Jul;15(3):199-205. doi: 10.1006/meth.1998.0624.

Abstract

The RNA-specific adenosine deaminase (ADAR1, herein referred to as ADAR) is an interferon-inducible RNA-editing enzyme. ADAR catalyzes the C-6 deamination of adenosine in double-stranded (ds) structures present in viral RNAs and cellular pre-mRNAs as well as synthetic dsRNA substrates. ADAR possesses three functionally distinct copies of the highly conserved double-stranded RNA binding R motif (RI, RII, RIII) implicated in the recognition of dsRNA structures within the substrate RNAs. ADAR is also a Z-DNA-binding protein. Two Z-DNA binding motifs (Zalpha and Zbeta) present in ADAR correspond to repeated regions homologous to the N-terminal region of the vaccinia virus E3L protein. Here we describe assay methods for measurement of ADAR enzymatic activity, dsRNA binding activity, and Z-DNA binding activity.

摘要

RNA特异性腺苷脱氨酶(ADAR1,本文简称为ADAR)是一种干扰素诱导的RNA编辑酶。ADAR催化病毒RNA、细胞前体mRNA以及合成双链RNA底物中双链(ds)结构的腺苷C-6脱氨基反应。ADAR具有三个功能不同的高度保守双链RNA结合R基序(RI、RII、RIII)拷贝,这些基序与识别底物RNA中的dsRNA结构有关。ADAR也是一种Z-DNA结合蛋白。ADAR中存在的两个Z-DNA结合基序(Zalpha和Zbeta)对应于与痘苗病毒E3L蛋白N端区域同源的重复区域。本文我们描述了用于测量ADAR酶活性、dsRNA结合活性和Z-DNA结合活性的检测方法。

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