Identification of Abundant and Functional dodecaRNAs (doRNAs) Derived from Ribosomal RNA

Using a modified RNA-sequencing (RNA-seq) approach, we discovered a new family of unusually short RNAs mapping to ribosomal RNA 5.8S, which we named dodecaRNAs (doRNAs), according to the number of core nucleotides (12 nt) their members contain. Using a new quantitative detection method that we devel...

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Veröffentlicht in:International journal of molecular sciences 2021-09, Vol.22 (18), p.9757
Hauptverfasser: Lambert, Marine, Benmoussa, Abderrahim, Diallo, Idrissa, Ouellet-Boutin, Katheryn, Dorval, Véronique, Majeau, Nathalie, Joly-Beauparlant, Charles, Droit, Arnaud, Bergeron, Alain, Têtu, Bernard, Fradet, Yves, Pouliot, Frédéric, Provost, Patrick
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Sprache:eng
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Zusammenfassung:Using a modified RNA-sequencing (RNA-seq) approach, we discovered a new family of unusually short RNAs mapping to ribosomal RNA 5.8S, which we named dodecaRNAs (doRNAs), according to the number of core nucleotides (12 nt) their members contain. Using a new quantitative detection method that we developed, we confirmed our RNA-seq data and determined that the minimal core doRNA sequence and its 13-nt variant C-doRNA (doRNA with a 5′ Cytosine) are the two most abundant doRNAs, which, together, may outnumber microRNAs. The C-doRNA/doRNA ratio is stable within species but differed between species. doRNA and C-doRNA are mainly cytoplasmic and interact with heterogeneous nuclear ribonucleoproteins (hnRNP) A0, A1 and A2B1, but not Argonaute 2. Reporter gene activity assays suggest that C-doRNA may function as a regulator of Annexin II receptor (AXIIR) expression. doRNAs are differentially expressed in prostate cancer cells/tissues and may control cell migration. These findings suggest that unusually short RNAs may be more abundant and important than previously thought.
ISSN:1422-0067
1661-6596
1422-0067
DOI:10.3390/ijms22189757