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双链RNA结合基序对ADAR2功能的底物依赖性贡献。

Substrate-dependent contribution of double-stranded RNA-binding motifs to ADAR2 function.

作者信息

Xu Ming, Wells K Sam, Emeson Ronald B

机构信息

Department of Pharmacology, School of Medicine, Vanderbilt University, Nashville, TN 37232-8548, USA.

出版信息

Mol Biol Cell. 2006 Jul;17(7):3211-20. doi: 10.1091/mbc.e06-02-0162. Epub 2006 May 3.

Abstract

ADAR2 is a double-stranded RNA-specific adenosine deaminase involved in the editing of mammalian RNAs by the site-specific conversion of adenosine to inosine (A-to-I). ADAR2 contains two tandem double-stranded RNA-binding motifs (dsRBMs) that are not only important for efficient editing of RNA substrates but also necessary for localizing ADAR2 to nucleoli. The sequence and structural similarity of these motifs have raised questions regarding the role(s) that each dsRBM plays in ADAR2 function. Here, we demonstrate that the dsRBMs of ADAR2 differ in both their ability to modulate subnuclear localization as well as to promote site-selective A-to-I conversion. Surprisingly, dsRBM1 contributes to editing activity in a substrate-dependent manner, indicating that dsRBMs recognize distinct structural determinants in each RNA substrate. Although dsRBM2 is essential for the editing of all substrates examined, a point mutation in this motif affects editing for only a subset of RNAs, suggesting that dsRBM2 uses unique sets of amino acid(s) for functional interactions with different RNA targets. The dsRBMs of ADAR2 are interchangeable for subnuclear targeting, yet such motif alterations do not support site-selective editing, indicating that the unique binding preferences of each dsRBM differentially contribute to their pleiotropic function.

摘要

ADAR2是一种双链RNA特异性腺苷脱氨酶,通过将腺苷位点特异性转化为肌苷(A到I)参与哺乳动物RNA的编辑。ADAR2包含两个串联的双链RNA结合基序(dsRBMs),它们不仅对RNA底物的有效编辑很重要,而且对于将ADAR2定位于核仁也是必需的。这些基序的序列和结构相似性引发了关于每个dsRBM在ADAR2功能中所起作用的问题。在这里,我们证明ADAR2的dsRBMs在调节亚核定位以及促进位点选择性A到I转化的能力方面都有所不同。令人惊讶的是,dsRBM1以底物依赖的方式促进编辑活性,这表明dsRBMs识别每个RNA底物中不同的结构决定因素。虽然dsRBM2对于所有检测的底物的编辑都是必不可少的,但该基序中的一个点突变仅影响一部分RNA的编辑,这表明dsRBM2使用独特的氨基酸集与不同的RNA靶标进行功能相互作用。ADAR2的dsRBMs在亚核靶向方面是可互换的,但这种基序改变不支持位点选择性编辑,这表明每个dsRBM独特的结合偏好对其多效性功能有不同的贡献。

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本文引用的文献

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