Department of Chemistry and Biochemistry and Center for RNA Biology, Ohio State University, Columbus, OH 43210, USA.
Department of Chemistry, Graduate School of Science, University of Tokyo, Bunkyo, Tokyo 113-0033, Japan.
Nucleic Acids Res. 2023 May 8;51(8):3988-3999. doi: 10.1093/nar/gkad192.
High fidelity tRNA aminoacylation by aminoacyl-tRNA synthetases is essential for cell viability. ProXp-ala is a trans-editing protein that is present in all three domains of life and is responsible for hydrolyzing mischarged Ala-tRNAPro and preventing mistranslation of proline codons. Previous studies have shown that, like bacterial prolyl-tRNA synthetase, Caulobacter crescentus ProXp-ala recognizes the unique C1:G72 terminal base pair of the tRNAPro acceptor stem, helping to ensure deacylation of Ala-tRNAPro but not Ala-tRNAAla. The structural basis for C1:G72 recognition by ProXp-ala is still unknown and was investigated here. NMR spectroscopy, binding, and activity assays revealed two conserved residues, K50 and R80, that likely interact with the first base pair, stabilizing the initial protein-RNA encounter complex. Modeling studies are consistent with direct interaction between R80 and the major groove of G72. A third key contact between A76 of tRNAPro and K45 of ProXp-ala was essential for binding and accommodating the CCA-3' end in the active site. We also demonstrated the essential role that the 2'OH of A76 plays in catalysis. Eukaryotic ProXp-ala proteins recognize the same acceptor stem positions as their bacterial counterparts, albeit with different nucleotide base identities. ProXp-ala is encoded in some human pathogens; thus, these results have the potential to inform new antibiotic drug design.
氨酰-tRNA 合成酶对 tRNA 的高保真氨酰化对于细胞活力至关重要。ProXp-ala 是一种存在于所有三个生命领域的转编辑蛋白,负责水解错误氨酰化的 Ala-tRNAPro,防止脯氨酸密码子错译。先前的研究表明,与细菌的脯酰-tRNA 合成酶一样,新月柄杆菌 ProXp-ala 识别 tRNAPro 受体茎的独特 C1:G72 末端碱基对,有助于确保 Ala-tRNAPro 的去酰化,但不确保 Ala-tRNAAla 的去酰化。ProXp-ala 识别 C1:G72 的结构基础尚不清楚,本研究对此进行了调查。NMR 光谱学、结合和活性测定表明,两个保守残基 K50 和 R80 可能与第一碱基对相互作用,稳定初始的蛋白-RNA 相遇复合物。建模研究与 R80 与 G72 大沟之间的直接相互作用一致。tRNAPro 的 A76 与 ProXp-ala 的 K45 之间的第三个关键接触对于结合和容纳活性位点中的 CCA-3' 末端至关重要。我们还证明了 A76 的 2'OH 在催化中的重要作用。真核 ProXp-ala 蛋白识别与其细菌对应物相同的受体茎位置,尽管核苷酸碱基身份不同。ProXp-ala 编码在一些人类病原体中;因此,这些结果有可能为新的抗生素药物设计提供信息。