HIF1α-AS1 is a DNA:DNA:RNA triplex-forming lncRNA interacting with the HUSH complex
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Published:2022-11-02
Issue:1
Volume:13
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Leisegang Matthias S.ORCID, Bains Jasleen KaurORCID, Seredinski Sandra, Oo James A., Krause Nina M., Kuo Chao-ChungORCID, Günther StefanORCID, Sentürk Cetin Nevcin, Warwick TimothyORCID, Cao Can, Boos FrederikeORCID, Izquierdo Ponce Judit, Haydar Shaza, Bednarz RebeccaORCID, Valasarajan Chanil, Fuhrmann Dominik C.ORCID, Preussner JensORCID, Looso MarioORCID, Pullamsetti Soni S.ORCID, Schulz Marcel H.ORCID, Jonker Hendrik R. A.ORCID, Richter Christian, Rezende Flávia, Gilsbach RalfORCID, Pflüger-Müller Beatrice, Wittig IlkaORCID, Grummt Ingrid, Ribarska Teodora, Costa Ivan G.ORCID, Schwalbe HaraldORCID, Brandes Ralf P.ORCID
Abstract
AbstractDNA:DNA:RNA triplexes that are formed through Hoogsteen base-pairing of the RNA in the major groove of the DNA duplex have been observed in vitro, but the extent to which these interactions occur in cells and how they impact cellular functions remains elusive. Using a combination of bioinformatic techniques, RNA/DNA pulldown and biophysical studies, we set out to identify functionally important DNA:DNA:RNA triplex-forming long non-coding RNAs (lncRNA) in human endothelial cells. The lncRNA HIF1α-AS1 was retrieved as a top hit. Endogenous HIF1α-AS1 reduces the expression of numerous genes, including EPH Receptor A2 and Adrenomedullin through DNA:DNA:RNA triplex formation by acting as an adapter for the repressive human silencing hub complex (HUSH). Moreover, the oxygen-sensitive HIF1α-AS1 is down-regulated in pulmonary hypertension and loss-of-function approaches not only result in gene de-repression but also enhance angiogenic capacity. As exemplified here with HIF1α-AS1, DNA:DNA:RNA triplex formation is a functionally important mechanism of trans-acting gene expression control.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary
Reference90 articles.
1. Statello, L., Guo, C.-J., Chen, L.-L. & Huarte, M. Gene regulation by long non-coding RNAs and its biological functions. Nat. Rev. Mol. Cell Biol. 22, 96–118 (2021). 2. Felsenfeld, G., Davies, D. R. & Rich, A. Formation of a three-stranded polynucleotide molecule. J. Am. Chem. Soc. 79, 2023–2024 (1957). 3. Li, Y., Syed, J. & Sugiyama, H. RNA-DNA triplex formation by long noncoding RNAs. Cell Chem. Biol. 23, 1325–1333 (2016). 4. Mondal, T. et al. MEG3 long noncoding RNA regulates the TGF-β pathway genes through formation of RNA-DNA triplex structures. Nat. Commun. 6, 7743 (2015). 5. Jalali, S., Singh, A., Scaria, V. & Maiti, S. Genome-wide computational analysis and validation of potential long noncoding RNA-mediated DNA-DNA-RNA triplexes in the human genome. Methods Mol. Biol. (Clifton, N. J.) 2254, 61–71 (2021).
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