Transfer RNA-derived small RNAs (tsRNAs or tDRs) perform a range of cellular functions. Here, we showed that tRNA-Asp-GTC-3'tDR, a hypoxia-induced tDR derived from the 3' end of tRNA-Asp-GTC, activated autophagic flux in kidney cells and its silencing blocked autophagic flux. Functional gain-/loss-of-function studies in murine kidney disease models demonstrated a substantial renoprotective function of tRNA-Asp-GTC-3'tDR. Mechanistically, tRNA-Asp-GTC-3'tDR assembled stable G-quadruplex structures and sequestered pseudouridine synthase 7 (PUS7), preventing catalytic pseudouridylation of histone mRNAs. The resulting pseudouridylation deficiency directed histone mRNAs to the autophagosome-lysosome pathway, triggering RNA autophagy. This tDR-induced RNA autophagy pathway was activated during murine and human kidney diseases, suggesting clinical relevance. Thus, tRNA-Asp-GTC-3'tDR plays a role in regulating RNA autophagy, which helps to maintain homeostasis in kidney cells and protects against kidney injury.
A hypoxia-responsive tRNA-derived small RNA confers renal protection through RNA autophagy.
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作者:Li Guoping, Sun Lingfei, Xin Cuiyan, Hao Tian, Kharel Prakash, Manning Aidan C, O'Connor Christopher L, Moore Henry, Lei Shuwen, Gokulnath Priyanka, Yang Xinyu, Sharma Ritin, Garcia-Mansfield Krystine, Pantham Priyadarshini, Xiao Chunyang, Wang Hanna Y, Chatterjee Emeli, Yim Seungbin, Ren Leo B, Spanos Michail, Zhu Hua, Li Haobo, Lei Ji, Markmann James F, Laurent Louise C, Rossi John J, Akeju Oluwaseun, Sheng Quanhu, Shah Ravi V, Goddard William A 3rd, Lowe Todd M, Pirrotte Patrick, Bitzer Markus, Ivanov Pavel, Bonventre Joseph V, Das Saumya
| 期刊: | Science | 影响因子: | 45.800 |
| 时间: | 2025 | 起止号: | 2025 Aug 28; 389(6763):eadp5384 |
| doi: | 10.1126/science.adp5384 | ||
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