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Dimerization of ADAR2 is mediated by the double-stranded RNA binding domain

机译:ADAR2的二聚化是由双链RNA结合结构域介导的

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摘要

Members of the family of adenosine deaminases acting on RNA (ADARs) can catalyze the hydrolytic deamination of adenosine to inosine and thereby change the sequence of specific mRNAs with highly double-stranded structures. The ADARs all contain one or more repeats of the double-stranded RNA binding motif (DRBM). By both in vitro and in vivo assays, we show that the DRBMs of rat ADAR2 are necessary and sufficient for dimerization of the enzyme. Bioluminescence resonance energy transfer (BRET) demonstrates that ADAR2 also exists as dimers in living mammalian cells and that mutation of DRBM1 lowers the dimerization affinity while mutation of DRBM2 does not. Nonetheless, the editing efficiency of the GluR2 Q/R site depends on a functional DRBM2. The ADAR2 DRBMs thus serve differential roles in RNA dimerization and GluR2 Q/R editing, and we propose a model for RNA editing that incorporates the new findings.
机译:作用于RNA(ADAR)的腺苷脱氨基酶家族成员可以催化腺苷水解为​​肌苷,从而改变具有高度双链结构的特定mRNA的序列。 ADAR均包含一个或多个双链RNA结合基序(DRBM)的重复。通过体外和体内试验,我们表明大鼠ADAR2的DRBM对酶的二聚化是必要和充分的。生物发光共振能量转移(BRET)表明,ADAR2也以二聚体形式存在于活的哺乳动物细胞中,DRBM1的突变降低了二聚化亲和力,而DRBM2的突变则没有。但是,GluR2 Q / R站点的编辑效率取决于功能性DRBM2。因此,ADAR2 DRBM在RNA二聚化和GluR2 Q / R编辑中起着不同的作用,我们提出了一个结合新发现的RNA编辑模型。

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