Human TRMT2A methylates tRNA and contributes to translation fidelity

Author:

Witzenberger Monika1,Burczyk Sandra2,Settele David1,Mayer Wieland2,Welp Luisa M34,Heiss Matthias5,Wagner Mirko5,Monecke Thomas2,Janowski Robert1ORCID,Carell Thomas5ORCID,Urlaub Henning34,Hauck Stefanie M6ORCID,Voigt Aaron7,Niessing Dierk12ORCID

Affiliation:

1. Institute of Structural Biology, Helmholtz Zentrum München-German Research Center for Environmental Health , Neuherberg , Germany

2. Institute of Pharmaceutical Biotechnology, Ulm University , Ulm , Germany

3. Bioanalytical Mass Spectrometry Group, Max Planck Institute for Multidisciplinary Sciences , Göttingen , Germany

4. Institute of Clinical Chemistry, University Medical Center Göttingen , Göttingen , Germany

5. Department of Chemistry and Biochemistry, Ludwig-Maximilians University Munich , München , Germany

6. Metabolomics and Proteomics Core, Research Unit Protein Science, Helmholtz Zentrum München-German Research Center for Environmental Health , Neuherberg , Germany

7. Department of Neurology, Faculty of Medicine, RWTH Aachen , Aachen , Germany

Abstract

Abstract 5-Methyluridine (m5U) is one of the most abundant RNA modifications found in cytosolic tRNA. tRNA methyltransferase 2 homolog A (hTRMT2A) is the dedicated mammalian enzyme for m5U formation at tRNA position 54. However, its RNA binding specificity and functional role in the cell are not well understood. Here we dissected structural and sequence requirements for binding and methylation of its RNA targets. Specificity of tRNA modification by hTRMT2A is achieved by a combination of modest binding preference and presence of a uridine in position 54 of tRNAs. Mutational analysis together with cross-linking experiments identified a large hTRMT2A–tRNA binding surface. Furthermore, complementing hTRMT2A interactome studies revealed that hTRMT2A interacts with proteins involved in RNA biogenesis. Finally, we addressed the question of the importance of hTRMT2A function by showing that its knockdown reduces translation fidelity. These findings extend the role of hTRMT2A beyond tRNA modification towards a role in translation.

Funder

Federal Ministry of Education and Research

Max Planck Society

Bayerische Forschungsstiftung

European Research Council

Deutsche Forschungsgemeinschaft

Publisher

Oxford University Press (OUP)

Subject

Genetics

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