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  4. XPF activates break-induced telomere synthesis
 
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XPF activates break-induced telomere synthesis

Journal
Nature communications
Journal Volume
13
Journal Volume
13
Journal Issue
1
Journal Issue
1
Pages
Article number 5781
Start Page
5781
Date Issued
2022-10-02
Author(s)
Guh, Chia-Yu
Shen, Hong-Jhih
Chen, Liv WeiChien
Chiu, Pei-Chen
Liao, I-Hsin
Lo, Chen-Chia
Chen, Yunfei
Hsieh, Yu-Hung
Chang, Ting-Chia
Yen, Chien-Ping
Chen, Yi-Yun
WEI-WU CHEN  orcid-logo
Chen, Liuh-Yow
CHING-SHYI WU  orcid-logo
Egly, Jean-Marc
HSUEH-PING CHU  
DOI
10.1038/s41467-022-33428-0
10.1038/s41467-022-33428-0
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/626758
URL
https://api.elsevier.com/content/abstract/scopus_id/85139115628
Abstract
Alternative Lengthening of Telomeres (ALT) utilizes a recombination mechanism and break-induced DNA synthesis to maintain telomere length without telomerase, but it is unclear how cells initiate ALT. TERRA, telomeric repeat-containing RNA, forms RNA:DNA hybrids (R-loops) at ALT telomeres. We show that depleting TERRA using an RNA-targeting Cas9 system reduces ALT-associated PML bodies, telomere clustering, and telomere lengthening. TERRA interactome reveals that TERRA interacts with an extensive subset of DNA repair proteins in ALT cells. One of TERRA interacting proteins, the endonuclease XPF, is highly enriched at ALT telomeres and recruited by telomeric R-loops to induce DNA damage response (DDR) independent of CSB and SLX4, and thus triggers break-induced telomere synthesis and lengthening. The attraction of BRCA1 and RAD51 at telomeres requires XPF in FANCM-deficient cells that accumulate telomeric R-loops. Our results suggest that telomeric R-loops activate DDR via XPF to promote homologous recombination and telomere replication to drive ALT.
Subjects
NUCLEOTIDE EXCISION-REPAIR; DNA-REPAIR; MOLECULAR-MECHANISMS; INDUCED REPLICATION; MAMMALIAN-CELLS; ALT CELLS; PML BODY; TRANSCRIPTION; RNA; MAINTENANCE
Publisher
NATURE PORTFOLIO
Type
journal article

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