Valente Louis, Nishikura Kazuko
Department of Gene Expression and Regulation, Wistar Institute, Philadelphia, Pennsylvania 19104, USA.
J Biol Chem. 2007 Jun 1;282(22):16054-61. doi: 10.1074/jbc.M611392200. Epub 2007 Apr 11.
RNA editing that converts adenosine to inosine in double-stranded RNA (dsRNA) is mediated by adenosine deaminases acting on RNA (ADAR). ADAR1 and ADAR2 form respective homodimers, and this association is essential for their enzymatic activities. In this investigation, we set out experiments aiming to determine whether formation of the homodimer complex is mediated by an amino acid interface made through protein-protein interactions of two monomers or via binding of the two subunits to a dsRNA substrate. Point mutations were created in the dsRNA binding domains (dsRBDs) that abolished all RNA binding, as tested for two classes of ADAR ligands, long and short dsRNA. The mutant ADAR dimer complexes were intact, as demonstrated by their ability to co-purify in a sequential affinity-tagged purification and also by their elution at the dimeric fraction position on a size fractionation column. Our results demonstrated ADAR dimerization independent of their binding to dsRNA, establishing the importance of protein-protein interactions for dimer formation. As expected, these mutant ADARs could no longer perform their catalytic function due to the loss in substrate binding. Surprisingly, a chimeric dimer consisting of one RNA binding mutant monomer and a wild type partner still abolished its ability to bind and edit its substrate, indicating that ADAR dimers require two subunits with functional dsRBDs for binding to a dsRNA substrate and then for editing activity to occur.
在双链RNA(dsRNA)中将腺苷转化为肌苷的RNA编辑是由作用于RNA的腺苷脱氨酶(ADAR)介导的。ADAR1和ADAR2分别形成同型二聚体,这种结合对它们的酶活性至关重要。在本研究中,我们开展了实验,旨在确定同型二聚体复合物的形成是由两个单体通过蛋白质-蛋白质相互作用形成的氨基酸界面介导的,还是通过两个亚基与dsRNA底物的结合介导的。在dsRNA结合结构域(dsRBDs)中产生了点突变,这些突变消除了所有RNA结合,这通过对两类ADAR配体(长dsRNA和短dsRNA)的测试得到证实。突变型ADAR二聚体复合物是完整的,这通过它们在顺序亲和标签纯化中能够共同纯化以及在尺寸分级柱上以二聚体级分位置洗脱得到证明。我们的结果表明ADAR二聚化与其与dsRNA的结合无关,确立了蛋白质-蛋白质相互作用对二聚体形成的重要性。正如预期的那样,由于底物结合丧失,这些突变型ADAR不再能够发挥其催化功能。令人惊讶的是,由一个RNA结合突变单体和一个野生型伙伴组成的嵌合二聚体仍然丧失了其结合和编辑底物的能力,这表明ADAR二聚体需要两个具有功能性dsRBDs的亚基来结合dsRNA底物,然后才能发生编辑活性。