RAD51-dependent recruitment of TERRA lncRNA to telomeres through R-loops
Jazyk angličtina Země Anglie, Velká Británie Médium print-electronic
Typ dokumentu časopisecké články, práce podpořená grantem
Grantová podpora
Wellcome Trust - United Kingdom
166675
Swiss National Science Foundation - Switzerland
206292
Wellcome Trust - United Kingdom
206292/E/17/Z
Wellcome Trust - United Kingdom
PubMed
33057192
PubMed Central
PMC7116795
DOI
10.1038/s41586-020-2815-6
PII: 10.1038/s41586-020-2815-6
Knihovny.cz E-zdroje
- MeSH
- biokatalýza MeSH
- HeLa buňky MeSH
- lidé MeSH
- protein TRF1 metabolismus MeSH
- R-smyčka * MeSH
- rekombinasa Rad51 metabolismus MeSH
- reportérové geny MeSH
- ribonukleasa H metabolismus MeSH
- RNA dlouhá nekódující chemie genetika MeSH
- sekvence nukleotidů MeSH
- telomery chemie genetika metabolismus MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- protein TRF1 MeSH
- RAD51 protein, human MeSH Prohlížeč
- rekombinasa Rad51 MeSH
- ribonuclease HI MeSH Prohlížeč
- ribonukleasa H MeSH
- RNA dlouhá nekódující MeSH
Telomeres-repeated, noncoding nucleotide motifs and associated proteins that are found at the ends of eukaryotic chromosomes-mediate genome stability and determine cellular lifespan1. Telomeric-repeat-containing RNA (TERRA) is a class of long noncoding RNAs (lncRNAs) that are transcribed from chromosome ends2,3; these RNAs in turn regulate telomeric chromatin structure and telomere maintenance through the telomere-extending enzyme telomerase4-6 and homology-directed DNA repair7,8. The mechanisms by which TERRA is recruited to chromosome ends remain poorly defined. Here we develop a reporter system with which to dissect the underlying mechanisms, and show that the UUAGGG repeats of TERRA are both necessary and sufficient to target TERRA to chromosome ends. TERRA preferentially associates with short telomeres through the formation of telomeric DNA-RNA hybrid (R-loop) structures that can form in trans. Telomere association and R-loop formation trigger telomere fragility and are promoted by the recombinase RAD51 and its interacting partner BRCA2, but counteracted by the RNA-surveillance factors RNaseH1 and TRF1. RAD51 physically interacts with TERRA and catalyses R-loop formation with TERRA in vitro, suggesting a direct involvement of this DNA recombinase in the recruitment of TERRA by strand invasion. Together, our findings reveal a RAD51-dependent pathway that governs TERRA-mediated R-loop formation after transcription, providing a mechanism for the recruitment of lncRNAs to new loci in trans.
International Clinical Research Center St Anne's University Hospital Brno Czech Republic
Swiss Institute for Experimental Cancer Research Lausanne Switzerland
Zobrazit více v PubMed
Maciejowski J, de Lange T. Telomeres in cancer: tumour suppression and genome instability. Nature Reviews Molecular Cell Biology. 2017;18:175–186. PubMed PMC
Azzalin CM, Reichenbach P, Khoriauli L, Giulotto E, Lingner J. Telomeric Repeat–Containing RNA and RNA Surveillance Factors at Mammalian Chromosome Ends. Science. 2007;318:798–801. PubMed
Schoeftner S, Blasco MA. Developmentally regulated transcription of mammalian telomeres by DNA-dependent RNA polymerase II. Nature Cell Biology. 2008;10:228–236. PubMed
Arora R, et al. RNaseH1 regulates TERRA-telomeric DNA hybrids and telomere maintenance in ALT tumour cells. Nature Communications. 2014;5:5220. PubMed PMC
Graf M, et al. Telomere Length Determines TERRA and R-Loop Regulation through the Cell Cycle. Cell. 2017;170:72–85.e14. PubMed
Porro A, Feuerhahn S, Reichenbach P, Lingner J. Molecular Dissection of Telomeric Repeat-Containing RNA Biogenesis Unveils the Presence of Distinct and Multiple Regulatory Pathways. Molecular and Cellular Biology. 2010;30:4808–4817. PubMed PMC
Larson DR, Zenklusen D, Wu B, Chao JA, Singer RH. Real-Time Observation of Transcription Initiation and Elongation on an Endogenous Yeast Gene. Science. 2011;332:475–478. PubMed PMC
Hockemeyer D, et al. Efficient targeting of expressed and silent genes in human ESCs and iPSCs using zinc-finger nucleases. Nature Biotechnology. 2009;27:851–857. PubMed PMC
Cusanelli E, Romero CAP, Chartrand P. Telomeric noncoding RNA TERRA is induced by telomere shortening to nucleate telomerase molecules at short telomeres. Mol Cell. 2013;51:780–791. PubMed
Moravec M, et al. TERRA promotes telomerase-mediated telomere elongation in Schizosaccharomyces pombe. EMBO Rep. 2016;17:999–1012. PubMed PMC
Jensen RB, Carreira A, Kowalczykowski SC. Purified human BRCA2 stimulates RAD51-mediated recombination. Nature. 2010;467:678–683. PubMed PMC
Thorslund T, et al. The breast cancer tumor suppressor BRCA2 promotes the specific targeting of RAD51 to single-stranded DNA. Nat Struct Mol Biol. 2010;17:1263–1265. PubMed PMC
Mason JM, Chan Y-L, Weichselbaum RW, Bishop DK. Non-enzymatic roles of human RAD51 at stalled replication forks. Nature Communications. 2019;10 PubMed PMC
Boguslawski SJ, et al. Characterization of monoclonal antibody to DNA.RNA and its application to immunodetection of hybrids. Journal of Immunological Methods. 1986;89:123–130. PubMed
Sagie S, et al. Telomeres in ICF syndrome cells are vulnerable to DNA damage due to elevated DNA:RNA hybrids. Nature Communications. 2017;8 14015. PubMed PMC
Pfeiffer V, Crittin J, Grolimund L, Lingner J. The THO complex component Thp2 counteracts telomeric R-loops and telomere shortening. EMBO J. 2013;32:2861–2871. PubMed PMC
Balk B, et al. Telomeric RNA-DNA hybrids affect telomere-length dynamics and senescence. Nat Struct Mol Biol. 2013;20:1199–1205. PubMed
Sfeir A, et al. Mammalian telomeres resemble fragile sites and require TRF1 for efficient replication. Cell. 2009;138:90–103. PubMed PMC
Redon S, Zemp I, Lingner J. A three-state model for the regulation of telomerase by TERRA and hnRNPA1. Nucleic Acids Res. 2013;41:9117–9128. PubMed PMC
Crossley MP, Bocek M, Cimprich KA. R-Loops as Cellular Regulators and Genomic Threats. Molecular Cell. 2019;73:398–411. PubMed PMC
Wahba L, Gore SK, Koshland D. The homologous recombination machinery modulates the formation of RNA–DNA hybrids and associated chromosome instability. eLife. 2013 doi: 10.7554/eLife.00505. https://elifesciences.org/articles/00505. PubMed DOI PMC
Ran FA, et al. Genome engineering using the CRISPR-Cas9 system. Nature Protocols. 2013;8:2281–2308. PubMed PMC
Grolimund L, et al. A quantitative telomeric chromatin isolation protocol identifies different telomeric states. Nature Communications. 2013;4:2848. PubMed
Feretzaki M, Lingner J. A practical qPCR approach to detect TERRA, the elusive telomeric repeat-containing RNA. Methods. 2017;114:39–45. PubMed
Porro A, et al. Functional characterization of the TERRA transcriptome at damaged telomeres. Nature Communications. 2014;5:5379. PubMed PMC
Porro A, Feuerhahn S, Lingner J. TERRA-Reinforced Association of LSD1 with MRE11 Promotes Processing of Uncapped Telomeres. Cell Reports. 2014;6:765–776. PubMed
Špírek M, et al. Human RAD51 rapidly forms intrinsically dynamic nucleoprotein filaments modulated by nucleotide binding state. Nucleic Acids Research. 2018;46:3967–3980. PubMed PMC
RAD51 Inhibition Induces R-Loop Formation in Early G1 Phase of the Cell Cycle