[No authors listed]
Modified uridine containing taurine, 5-taurinomethyluridine (Ïm5U), is found at the anticodon first position of mitochondrial (mt-)transfer RNAs (tRNAs). Previously, we reported that Ïm5U is absent in mt-tRNAs with pathogenic mutations associated with mitochondrial diseases. However, biogenesis and physiological role of Ïm5U remained elusive. Here, we elucidated Ïm5U biogenesis by confirming that 5,10-methylene-tetrahydrofolate and taurine are metabolic substrates for Ïm5U formation catalyzed by MTO1 and GTPBP3. GTPBP3-knockout cells exhibited respiratory defects and reduced mitochondrial translation. Very little Ïm5U34 was detected in patient's cells with the GTPBP3 mutation, demonstrating that lack of Ïm5U results in pathological consequences. Taurine starvation resulted in downregulation of Ïm5U frequency in cultured cells and animal tissues (cat liver and flatfish). Strikingly, 5-carboxymethylaminomethyluridine (cmnm5U), in which the taurine moiety of Ïm5U is replaced with glycine, was detected in mt-tRNAs from taurine-depleted cells. These results indicate that tRNA modifications are dynamically regulated via sensing of intracellular metabolites under physiological condition.
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