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FANCM suppresses DNA replication stress at ALT telomeres by disrupting TERRA R-loops.
Pan, Xiaolei; Chen, Yun; Biju, Beena; Ahmed, Naveed; Kong, Joyce; Goldenberg, Marti; Huang, Judy; Mohan, Nandakumar; Klosek, Stephanie; Parsa, Kian; Guh, Chia-Yu; Lu, Robert; Pickett, Hilda A; Chu, Hsueh-Ping; Zhang, Dong.
Affiliation
  • Pan X; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Chen Y; Institute of Molecular and Cellular Biology, National Taiwan University, Taipei, Taiwan.
  • Biju B; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Ahmed N; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Kong J; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Goldenberg M; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Huang J; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Mohan N; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Klosek S; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Parsa K; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA.
  • Guh CY; Institute of Molecular and Cellular Biology, National Taiwan University, Taipei, Taiwan.
  • Lu R; Telomere Length Regulation Unit, Children's Medical Research Institute, University of Sydney, Westmead, New South Wales, Australia.
  • Pickett HA; Telomere Length Regulation Unit, Children's Medical Research Institute, University of Sydney, Westmead, New South Wales, Australia.
  • Chu HP; Institute of Molecular and Cellular Biology, National Taiwan University, Taipei, Taiwan. cchu2017@ntu.edu.tw.
  • Zhang D; Department of Biomedical Sciences, College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY, 11568, USA. dzhang12@nyit.edu.
Sci Rep ; 9(1): 19110, 2019 12 13.
Article in En | MEDLINE | ID: mdl-31836759
ABSTRACT
Cancer cells maintain their telomeres by either re-activating telomerase or adopting the homologous recombination (HR)-based Alternative Lengthening of Telomere (ALT) pathway. Among the many prominent features of ALT cells, C-circles (CC) formation is considered to be the most specific and quantifiable biomarker of ALT. However, the molecular mechanism behind the initiation and maintenance of CC formation in ALT cells is still largely unknown. We reported previously that depletion of the FANCM complex (FANCM-FAAP24-MHF1&2) in ALT cells induced pronounced replication stress, which primarily takes place at their telomeres. Here, we characterized the changes in ALT associated phenotypes in cells deficient of the FANCM complex. We found that depletion of FAAP24 or FANCM, but not MHF1&2, induces a dramatic increase of CC formation. Most importantly, we identified multiple DNA damage response (DDR) and DNA repair pathways that stimulate the dramatic increase of CC formation in FANCM deficient cells, including the dissolvase complex (BLM-TOP3A-RMI1/2, or BTR), DNA damage checkpoint kinases (ATR and Chk1), HR proteins (BRCA2, PALB2, and Rad51), as well as proteins involved in Break-Induced Replication (BIR) (POLD1 and POLD3). In addition, FANCD2, another Fanconi Anemia (FA) protein, is also required for CC formation, likely through promoting the recruitment of BLM to the replication stressed ALT telomeres. Finally, we demonstrated that TERRA R-loops accumulate at telomeres in FANCM deficient ALT cells and downregulation of which attenuates the ALT-associated PML bodies (APBs), replication stress and CC formation. Taken together, our data suggest that FANCM prevents replisomes from stalling/collapsing at ALT telomeres by disrupting TERRA R-loops.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Gene Expression Regulation, Neoplastic / Telomere / DNA Helicases / DNA Replication / Telomere Homeostasis / R-Loop Structures Limits: Humans Language: En Journal: Sci Rep Year: 2019 Type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Gene Expression Regulation, Neoplastic / Telomere / DNA Helicases / DNA Replication / Telomere Homeostasis / R-Loop Structures Limits: Humans Language: En Journal: Sci Rep Year: 2019 Type: Article Affiliation country: United States