Human TRMT1 and TRMT1L paralogs ensure the proper modification state, stability, and function of tRNAs.

人类 TRMT1 和 TRMT1L 旁系同源物确保 tRNA 的正确修饰状态、稳定性和功能

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作者:Zhang Kejia, Manning Aidan C, Lentini Jenna M, Howard Jonathan, Dalwigk Felix, Maroofian Reza, Efthymiou Stephanie, Chan Patricia, Eliseev Sergei I, Yang Zi, Chang Hayley, Karimiani Ehsan Ghayoor, Bakhshoodeh Behnoosh, Houlden Henry, Kaiser Stefanie M, Lowe Todd M, Fu Dragony
The tRNA methyltransferase 1 (TRMT1) enzyme catalyzes the N2,N2-dimethylguanosine (m2,2G) modification in tRNAs. Intriguingly, vertebrates encode an additional tRNA methyltransferase 1-like (TRMT1L) paralog. Here, we use a comprehensive tRNA sequencing approach to decipher targets of human TRMT1 and TRMT1L. We find that TRMT1 methylates all known tRNAs containing guanosine at position 26, while TRMT1L represents the elusive enzyme catalyzing m2,2G at position 27 in tyrosine tRNAs. Surprisingly, TRMT1L is also necessary for maintaining 3-(3-amino-3-carboxypropyl)uridine (acp3U) modifications in a subset of tRNAs through a process that can be uncoupled from methyltransferase activity. We also demonstrate that tyrosine and serine tRNAs are dependent upon m2,2G modifications for their stability and function in translation. Notably, human patient cells with disease-associated TRMT1 variants exhibit reduced levels of tyrosine and serine tRNAs. These findings uncover unexpected roles for TRMT1 paralogs, decipher functions for m2,2G modifications, and pinpoint tRNAs dysregulated in human disorders caused by tRNA modification deficiency.

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