Abstract

Inosine (I) at position 34 (wobble position) of tRNA is formed by the hydrolytic deamination of a genomically encoded adenosine (A). The enzyme catalyzing this reaction, termed tRNA A:34 deaminase, is the heterodimeric Tad2p/ADAT2.Tad3p/ADAT3 complex in eukaryotes. In budding yeast, deletion of each subunit is lethal, indicating that the wobble inosine tRNA modification is essential for viability; however, most of its physiological roles remain unknown. To identify novel cell cycle mutants in fission yeast, we isolated the tad3-1 mutant that is allelic to the tad3(+) gene encoding a homolog of budding yeast Tad3p. Interestingly, the tad3-1 mutant cells principally exhibited cell cycle-specific phenotype, namely temperature-sensitive and irreversible cell cycle arrest both in G(1) and G(2). Further analyses revealed that in the tad3-1 mutant cells, the S257N mutation that occurred in the catalytically inactive Tad3 subunit affected its association with catalytically active Tad2 subunit, leading to an impairment in the A to I conversion at position 34 of tRNA. In tad3-1 mutant cells, the overexpression of the tad3(+) gene completely suppressed the decreased tRNA inosine content. Notably, the overexpression of the tad2(+) gene partially suppressed the temperature-sensitive phenotype and the decreased tRNA inosine content, indicating that the tad3-1 mutant phenotype is because of the insufficient I(34) formation of tRNA. These results suggest that the wobble inosine tRNA modification is essential for cell cycle progression in the G(1)/S and G(2)/M transitions in fission yeast.

Highlights

  • The transfer RNAs2 are adapter molecules, which decode mRNA into protein and thereby play a central role in gene expression

  • Further analyses revealed that in the tad3-1 mutant cells, the S257N mutation that occurred in Tad3 deaminase domain destabilized a Tad21⁄7Tad3 enzyme complex, leading to a reduced activity of transfer RNAs (tRNAs) A:34 deaminase

  • Further analyses revealed that in the tad3-1 mutant cells, the S257N mutation that occurred in Tad3 deaminase domain destabilized a Tad21⁄7Tad3 enzyme complex, leading to the reduced activity of tRNA A:34 deaminase

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Summary

Fission yeast strains used in this study

Genotype hϪ leu hϩ his hϪ leu tad hϩ his leu hϪ leu ura294 hϪ leu ura294 ura4-294::ura4ϩ::nmt1-GFP-tad2ϩ hϪ leu tad sad1ϩ-GFP::LEU2 hϪ leu sad1ϩ-GFP::LEU2 hϪ leu ura tad cds1::ura4ϩ hϪ leu ura tad chk1::ura4ϩ. Our stock Our stock This study Our stock Our stock This study This study Our stock This study This study inosine tRNA modification plays an important role in cell cycle progression

EXPERIMENTAL PROCEDURES
RESULTS
DISCUSSION
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