| Literature DB >> 33432928 |
Andrea Cipriano1, Martina Macino1,2, Giulia Buonaiuto1, Tiziana Santini1,3, Beatrice Biferali1,2, Giovanna Peruzzi3, Alessio Colantoni1, Chiara Mozzetta2, Monica Ballarino1.
Abstract
Skeletal muscle possesses an outstanding capacity to regenerate upon injury due to the adult muscle stem cell (MuSC) activity. This ability requires the proper balance between MuSC expansion and differentiation, which is critical for muscle homeostasis and contributes, if deregulated, to muscle diseases. Here, we functionally characterize a novel chromatin-associated long noncoding RNA (lncRNA), Lnc-Rewind, which is expressed in murine MuSCs and conserved in human. We find that, in mouse, Lnc-Rewind acts as an epigenetic regulator of MuSC proliferation and expansion by influencing the expression of skeletal muscle genes and several components of the WNT (Wingless-INT) signalling pathway. Among them, we identified the nearby Wnt7b gene as a direct Lnc-Rewind target. We show that Lnc-Rewind interacts with the G9a histone lysine methyltransferase and mediates the in cis repression of Wnt7b by H3K9me2 deposition. Overall, these findings provide novel insights into the epigenetic regulation of adult muscle stem cells fate by lncRNAs.Entities:
Keywords: LncRNA; Wnt7b; cell biology; chromatin; epigenetics; human; mouse; muscle stem cells; ncRNA
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Year: 2021 PMID: 33432928 PMCID: PMC7837680 DOI: 10.7554/eLife.54782
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.140