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Compensatory tRNA Modification by DUS3L Confers Resistance to METTL1 Loss in Oesophageal Cancer

Santos Rosa, H.; price, J. L.; Tsagkogeorga, G.; Sapetschnig, A.; Pierattini, B.; Jordan, D.; Milan-Rois, P.; Serrano-Benitez, A.; Stott, K.; Han, N.; Kouzarides, T.; Miska, E. A.

2025-10-13 biochemistry
10.1101/2025.10.13.682082 bioRxiv
Show abstract

tRNA N-methylguanosine (mG46), installed by the METTL1/WDR4 methyltransferase, stabilizes the tRNA pool supporting high proliferative rates. Accordingly, many cancer cell lines are vulnerable to METTL1 loss, underscoring its potential as a therapeutic target. We identify a subset of cell lines insensitive to METTL1 depletion and use oesophageal lines as a model to explore the mechanism. The METTL1-resistant adenocarcinoma line OE33 preserves tRNA balance upon mG46 deficiency by elevating dihydrouridylation at position 47 (D47). Depletion of DUS-L enzymes that catalyse D16/D17/D20/D47 on tRNAs sensitises OE33 to METTL1 loss. Concomitant loss of dihydrouridylation and mG46 destabilizes the canonical L-shaped tRNA structure, disrupts coaxial helix stacking and anticodon-loop presentation, and reduces cellular fitness. Notably, METTL1-sensitive cell lines lack this compensatory pathway due to the deleterious effects of increasing their intrinsically low DUS3L levels. These findings reveal a DUS-L-mediated buffering mechanism that supports tRNA homeostasis in METTL1-resistant cancers and highlight DUS3L abundance as a potential biomarker for predicting METTL1 sensitivity. Moreover, they suggest that combined targeting of DUS-L and METTL1 may provide a therapeutic strategy for overcoming resistance in cancers, exemplified in cell lines such as OE33. HighlightsO_LIThe oesophagus cancer line OE33 shows no proliferative defect upon METTL1/WDR4 loss, despite complete lack of m7G46 on its tRNA. C_LIO_LIOE33 coordinates codon usage and abundance of cognate tRNAs in the absence of METTL1/WDR4; the METTL1/WDR4 sensitive line, OE21, fails to do so. C_LIO_LIDepleting dihydrouridine synthases (DUS-L) renders OE33 sensitive to METTL1/WDR4 loss. C_LIO_LIOE33 responds to lack of METTL1/WDR4 activity by upregulating DUS3L and its activity (D47) on tRNA; the sensitive line OE21 fails to do so. C_LIO_LIMETTL1-sensitive lines have intrinsically low DUS3L and cannot sustain higher levels. C_LIO_LIDUS3L reveals as a potential biomarker for METTL1 sensitivity. C_LI

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