Transfer RNA (tRNA) modifications are crucial for protein synthesis, but their position-specific physiological roles remain poorly understood. Here, we investigate the impact of N(4)-acetylcytidine (ac(4)C), a highly conserved tRNA modification catalyzed by the essential acetyltransferase Nat10. By targeting Thumpd1, a nonessential adapter protein required for Nat10-catalyzed tRNA acetylation, we determine that loss of tRNA acetylation leads to reduced levels of tRNA(Leu), increased ribosome stalling, and activation of eIF2α phosphorylation. Thumpd1 knockout mice exhibit growth defects and sterility. Concurrent knockout of Thumpd1 and the stress-sensing kinase Gcn2 causes penetrant postnatal lethality in mice, indicating a critical genetic interaction. Our findings demonstrate that a modification restricted to a single position within type II cytosolic tRNAs can regulate ribosome-mediated stress signaling in mammalian organisms, with implications for our understanding of translational control and therapeutic interventions.
Transfer RNA acetylation regulates in vivo mammalian stress signaling
转移RNA乙酰化调控哺乳动物体内应激信号传导
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作者:Supuni Thalalla Gamage ,Roxane Khoogar ,Shereen Howpay Manage ,Judey T DaRos ,McKenna C Crawford ,Joe Georgeson ,Bogdan V Polevoda ,Chelsea Sanders ,Kendall A Lee ,Kellie D Nance ,Vinithra Iyer ,Anatoly Kustanovich ,Minervo Perez ,Chu T Thu ,Sam R Nance ,Ruhul Amin ,Christine N Miller ,Ronald J Holewinski ,Sudipto Das ,Thomas J Meyer ,Vishal Koparde ,Acong Yang ,Parthav Jailwala ,Joe T Nguyen ,Thorkell Andresson ,Kent Hunter ,Shuo Gu ,Beverly A Mock ,Elijah F Edmondson ,Simone Difilippantonio ,Raj Chari ,Schraga Schwartz ,Mitchell R O'Connell ,Colin Chih-Chien Wu ,Jordan L Meier
| 期刊: | Science Advances | 影响因子: | 11.700 |
| 时间: | 2025 | 起止号: | 2025 Mar 21;11(12):eads2923. |
| doi: | 10.1126/sciadv.ads2923 | 研究方向: | 信号转导 |
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