C2-methyladenosine in tRNA promotes protein translation by facilitating the decoding of tandem m2A-tRNA-dependent codons
作者:Hong‐Chao Duan, Chi Zhang, Peizhe Song, Junbo Yang, Ye Wang, Guifang Jia · 发表于:Nature Communications · 年份:2024 · DOI:10.1038/s41467-024-45166-6 · 被引用次数:11 · 研究领域:RNA modifications and cancer、RNA and protein synthesis mechanisms、Cancer-related gene regulation
Abstract RNA modification C 2 -methyladenosine (m 2 A) exists in both rRNA and tRNA of Escherichia coli ( E. coli ), installed by the methyltransferase RlmN using a radical- S -adenosylmethionine (SAM) mechanism. However, the precise function of m 2 A in tRNA and its ubiquity in plants have remained unclear. Here we discover the presence of m 2 A in chloroplast rRNA and tRNA, as well as cytosolic tRNA, in multiple plant species. We identify six m 2 A-modified chloroplast tRNAs and two m 2 A-modified cytosolic tRNAs across different plants. Furthermore, we characterize three Arabidopsis m 2 A methyltransferases—RLMNL1, RLMNL2, and RLMNL3—which methylate chloroplast rRNA, chloroplast tRNA, and cytosolic tRNA, respectively. Our findings demonstrate that m 2 A37 promotes a relaxed conformation of tRNA, enhancing translation efficiency in chloroplast and cytosol by facilitating decoding of tandem m 2 A-tRNA-dependent codons. This study provides insights into the molecular function and biological significance of m 2 A, uncovering a layer of translation regulation in plants.