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Evidence for a regulatory role of the evolutionarily conserved sequence complementarity between tRNAs

Created on 05 Sep 2026

Authors

Sahu, A. K., Dash, A. A., Varshney, U.

Abstract

The tRNAs are non-coding RNAs (ncRNAs) known for their classical role in decoding mRNAs. Analysis of tRNA sequences from Escherichia coli revealed pairwise similarities for different combinations of tRNAs, as well as complementarities between some tRNA pairs. To explore the physiological significance of the complementarities between the tRNAs, we investigated the pair of tRNAs encoded by lysT (encoding an abundant tRNA, tRNALysT), and argU (encoding a rare tRNA, tRNAArgU). We show that tRNALysT and tRNAArgU anneal to form a heterodimer in vitro. The heterodimerisation is prevented by the presence of DNA oligomers complementary to the interacting sequences, in a dose dependent manner. Consistent with the notion of sequestration of tRNAArgU by tRNALysT, while the overexpression of tRNAArgU did not impact the culture growth, that of tRNALysT did. The tRNALysT mediated inhibition of the culture growth was enhanced at a lower temperature. The AGA minigene (decoded by tRNAArgU) mediated toxicity and hybrid phage ({lambda}imm-P22) growth on ssrA (tmRNA) strains was also consistent with the sequestration of tRNAArgU by tRNALysT. Also, we observed tRNA-derived fragments (tRFs) from tRNALysT and tRNAArgU, which too might facilitate tRNAArgU sequestration. Taken together, these observations support a novel regulatory role of the evolutionary conserved complementarities between tRNAs.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 05 Sep 2026.

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