4.8 Article

VID22 counteracts G-quadrup ex-induced genome instability

Journal

NUCLEIC ACIDS RESEARCH
Volume 49, Issue 22, Pages 12785-12804

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkab1156

Keywords

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Funding

  1. Associazione Italiana per la Ricerca sul Cancro (AIRC) [15631, 21806]
  2. MIUR [PRIN 20152015SJLMB9, PRIN 2017-2017KSZZJW, PRIN2017-2017Z55KC]
  3. Telethon [GGP15227]
  4. University of Milano
  5. Fondazione Veronesi
  6. Spanish Ministry of Economy and Competitiveness [BFU201675058-P]
  7. Spanish Association Against Cancer
  8. MIUR [PRIN 2017]
  9. CNRbiomics [PIR01 00017]
  10. H2020 Project ELIXIREXCELERATE
  11. H2020 Project EOSC-Life
  12. H2020 Project EOSC-Pillar
  13. H2020 Project Elixir-IIB
  14. Canadian Institutes of Health Research [FDN-159913]

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This study identifies VID22 as a novel regulator of genome integrity in yeast cells, involved in DNA double-strand break repair and protection of G4-DNA structures. Loss of VID22 leads to increased levels of endogenous DNA damage and hypersensitivity to G4-stabilizing ligands.
Genome instability is a condition characterized by the accumulation of genetic alterations and is a hallmark of cancer cells. To uncover new genes and cellular pathways affecting endogenous DNA damage and genome integrity, we exploited a Synthetic Genetic Array (SGA)-based screen in yeast. Among the positive genes, we identified VID22, reported to be involved in DNA double-strand break repair. vid22 Delta cells exhibit increased levels of endogenous DNA damage, chronic DNA damage response activation and accumulate DNA aberrations in sequences displaying high probabilities of forming G-quadruplexes (G4-DNA). If not resolved, these DNA secondary structures can block the progression of both DNA and RNA polymerases and correlate with chromosome fragile sites. Vid22 binds to and protects DNA at G4-containing regions both in vitro and in vivo. Loss of VID22causes an increase in gross chromosomal rearrangement (GCR) events de- pendent on G-quadruplex forming sequences. Moreover, the absence of Vid22 causes defects in the correct maintenance of G4-DNA rich elements, such as telomeres and mtDNA, and hypersensitivity to the G4-stabilizing ligand TMPyP4. We thus propose that Vid22 is directly involved in genome integrity maintenance as a novel regulator of G4 metabolism.

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