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Nucleoside analog studies indicate mechanistic differences between RNA-editing adenosine deaminases

机译:核苷类似物研究表明RNA编辑腺苷脱氨酶之间的机制差异

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Adenosine deaminases acting on RNA (ADAR1 and ADAR2) are human RNA-editing adenosine deaminases responsible for the conversion of adenosine to inosine at specific locations in cellular RNAs. Since inosine is recognized during translation as guanosine, this often results in the expression of protein sequences different from those encoded in the genome. While our knowledge of the ADAR2 structure and catalytic mechanism has grown over the years, our knowledge of ADAR1 has lagged. This is due, at least in part, to the lack of well defined, small RNA substrates useful for mechanistic studies of ADAR1. Here, we describe an ADAR1 substrate RNA that can be prepared by a combination of chemical synthesis and enzymatic ligation. Incorporation of adenosine analogs into this RNA and analysis of the rate of ADAR1 catalyzed deamination revealed similarities and differences in the way the ADARs recognize the edited nucleotide. Importantly, ADAR1 is more dependent than ADAR2 on the presence of N7 in the edited base. This difference between ADAR1 and ADAR2 appears to be dependent on the identity of a single amino acid residue near the active site. Thus, this work provides an important starting point in defining mechanistic differences between two functionally distinct human RNA editing ADARs.
机译:作用于RNA的腺苷脱氨酶(ADAR1和ADAR2)是人类RNA编辑的腺苷脱氨酶,负责在细胞RNA的特定位置将腺苷转化为肌苷。由于肌苷在翻译过程中被识别为鸟苷,因此通常会导致蛋白质序列的表达与基因组中编码的不同。这些年来,尽管我们对ADAR2的结构和催化机理的了解有所增加,但对ADAR1的了解却落后了。这至少部分是由于缺少可用于ADAR1机理研究的明确的小RNA底物。在这里,我们描述了可以通过化学合成和酶促结合的方法制备的ADAR1底物RNA。将腺苷类似物掺入该RNA并分析ADAR1催化的脱氨速率显示ADAR识别经编辑的核苷酸的方式的相似性和差异。重要的是,在编辑的碱基中,ADAR1比ADAR2更依赖于N7的存在。 ADAR1和ADAR2之间的这种差异似乎取决于活性位点附近单个氨基酸残基的身份。因此,这项工作为定义两个功能不同的人类RNA编辑ADAR之间的机理差异提供了重要的起点。

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