Mitochondrial RNA mC methyltransferase METTL8 relies on an isoform-specific N-terminal extension and modifies multiple heterogenous tRNAs.

Sci Bull (Beijing)

Key Laboratory of RNA Science and Engineering, State Key Laboratory of Molecular Biology, CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai 200031, China; Key Laboratory of Systems Health Science of Zhejiang Province, School of Life Science, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China. Electronic address:

Published: September 2023

Methyltransferase-like 8 (METTL8) encodes a mitochondria-localized METTL8-Iso1 and a nucleolus-distributed METTL8-Iso4 isoform, which differ only in their N-terminal extension (N-extension), by mRNA alternative splicing. METTL8-Iso1 generates 3-methylcytidine at position 32 (mC32) of mitochondrial tRNA and tRNA(UCN). Whether METTL8-Iso4 is an active mC32 methyltransferase and the role of the N-extension in mitochondrial tRNA mC32 formation remain unclear. Here, we revealed that METTL8-Iso4 was inactive in mC32 generation due to the lack of N-extension, which contains several absolutely conserved modification-critical residues; the counterparts were likewise essential in cytoplasmic mC32 biogenesis by methyltransferase-like 2A (METTL2A) or budding yeasts tRNA N-methylcytidine methyltransferase (Trm140), in vitro and in vivo. Cross-compartment/species tRNA modification assays unexpectedly found that METTL8-Iso1 efficiently introduced mC32 to several cytoplasmic or even bacterial tRNAs in vitro. mC32 did not influence tRNAN-threonylcarbamoyladenosine (tA) modification or aminoacylation. In addition to its interaction with mitochondrial seryl-tRNA synthetase (SARS2), we further discovered an interaction between mitochondrial threonyl-tRNA synthetase (TARS2) and METTL8-Iso1. METTL8-Iso1 substantially stimulated the aminoacylation activities of SARS2 and TARS2 in vitro, suggesting a functional connection between mitochondrial tRNA modification and charging. Altogether, our results deepen the mechanistic insights into mitochondrial mC32 biogenesis and provide a valuable route to prepare cytoplasmic/bacterial tRNAs with only a mC32 moiety, aiding in future efforts to investigate its effects on tRNA structure and function.

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http://dx.doi.org/10.1016/j.scib.2023.08.002DOI Listing

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