5'-tRNA<sup>Gly(GCC)</sup> halves generated by IRE1α are linked to the ER stress response.

Jin, Hanyong; Yeom, Ji-Hyun; Shin, Eunkyoung; Ha, Yoonjie; Liu, Haifeng; Kim, Daeyoung; Joo, Minju; Kim, Yong-Hak et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Transfer RNA halves (tRHs) have various biological functions. However, the biogenesis of specific 5'-tRHs under certain conditions remains unknown. Here, we report that inositol-requiring enzyme 1α (IRE1α) cleaves the anticodon stem-loop region of tRNA<sup>Gly(GCC)</sup> to produce 5'-tRHs (5'-tRH-Gly<sup>GCC</sup>) with highly selective target discrimination upon endoplasmic reticulum (ER) stress. Levels of 5'-tRH-Gly<sup>GCC</sup> positively affect cancer cell proliferation and modulate mRNA isoform biogenesis both in vitro and in vivo; these effects require co-expression of two nuclear ribonucleoproteins, HNRNPM and HNRNPH2, which we identify as binding proteins of 5'-tRH-Gly<sup>GCC</sup>. In addition, under ER stress in vivo, we observe simultaneous induction of IRE1α and 5'-tRH-Gly<sup>GCC</sup> expression in mouse organs and a distantly related organism, Cryptococcus neoformans. Thus, collectively, our findings indicate an evolutionarily conserved function for IRE1α-generated 5'-tRH-Gly<sup>GCC</sup> in cellular adaptation upon ER stress.

Medical subject headings