4.6 Article

INK4a/ARF limits the expansion of cells suffering from replication stress

期刊

CELL CYCLE
卷 12, 期 12, 页码 1948-1954

出版社

LANDES BIOSCIENCE
DOI: 10.4161/cc.25017

关键词

H2AX; ATR; replicative stress; INK4a/ARF; DNA damage

资金

  1. Spanish Government (MINECO)
  2. Spanish Association Against Cancer (AECC)
  3. Spanish Ministry of Science [SAF2011-23753]
  4. Association for International Cancer Research [12-0229]
  5. Howard Hughes Medical Institute
  6. European Research Council [ERC-210520]
  7. Worldwide Cancer Research [12-0229] Funding Source: researchfish

向作者/读者索取更多资源

Replication stress (RS) is a source of DNA damage that has been linked to cancer and aging, which is suppressed by the ATR kinase. In mice, reduced ATR levels in a model of the ATR-Seckel syndrome lead to RS and accelerated aging. Similarly, ATR-Seckel embryonic fibroblasts (MEF) accumulate RS and undergo cellular senescence. We previously showed that senescence of ATR-Seckel MEF cannot be rescued by p53-deletion. Here, we show that the genetic ablation of the INK4a/Arf locus fully rescues senescence on ATR mutant MEF, but also that induced by other conditions that generate RS such as low doses of hydroxyurea or ATR inhibitors. In addition, we show that a persistent exposure to RS leads to increased levels of INK4a/Arf products, revealing that INK4a/ARF behaves as a bona fide RS checkpoint. Our data reveal an unknown role for INK4a/ARF in limiting the expansion of cells suffering from persistent replication stress, linking this well-known tumor suppressor to the maintenance of genomic integrity.

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