A tRNA-derived small RNA regulates ribosome biogenesis

tRNA-derived small RNAs (tsRNAs; also called tRNA-derived fragments (tRFs)) are an abundant class of small non-coding RNAs whose biological roles are not well defined. We show that inhibition of a specific tsRNA, LeuCAG3′tsRNA, induces apoptosis in rapidly dividing cells in vitro and in a patient-de...

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Bibliographic Details
Published inNature (London) Vol. 552; no. 7683; pp. 57 - 62
Main Authors Kim, Hak Kyun, Fuchs, Gabriele, Wang, Shengchun, Wei, Wei, Zhang, Yue, Park, Hyesuk, Roy-Chaudhuri, Biswajoy, Li, Pan, Xu, Jianpeng, Chu, Kirk, Zhang, Feijie, Chua, Mei-Sze, So, Samuel, Zhang, Qiangfeng Cliff, Sarnow, Peter, Kay, Mark A.
Format Journal Article
LanguageEnglish
Published 29.11.2017
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Summary:tRNA-derived small RNAs (tsRNAs; also called tRNA-derived fragments (tRFs)) are an abundant class of small non-coding RNAs whose biological roles are not well defined. We show that inhibition of a specific tsRNA, LeuCAG3′tsRNA, induces apoptosis in rapidly dividing cells in vitro and in a patient-derived orthotopic hepatocellular carcinoma model in mice. This tsRNA binds at least two ribosomal protein mRNAs (for RPS28 and RPS15) to enhance their translation. Reduction of RPS28 mRNA translation blocks pre-18S ribosomal RNA processing, resulting in a decrease in the number of 40S ribosomal subunits. These data establish another post-transcriptional mechanism that can fine-tune gene expression during different physiological states and provide a potential new target for treating cancer.
Bibliography:Current address: The RNA Institute and Department of Biological Sciences, University at Albany, State University of New York, 1400 Washington Ave., Albany, NY, 12222, USA
Current address: Stanford Center for Genomics and Personalized Medicine, 3165 Porter Drive, Palo Alto, CA94304, USA
Current address: Impossible Foods Inc., 525 Chesapeake Dr., Redwood City, CA94063, USA
Current address: Medtronic Vascular, 3576 Unocal Place, Santa Rosa, CA 95403, USA
ISSN:0028-0836
1476-4687
DOI:10.1038/nature25005