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Histone chaperone FACT is essential to overcome replication stress in mammalian cells.

Laura PrendergastErin HongAlfiya SafinaDante PoeKaterina V Gurova
Published in: Oncogene (2020)
The histone chaperone FACT is upregulated during mammary tumorigenesis and necessary for the viability and growth of breast tumor cells. We established that only proliferating tumor cells are sensitive to FACT knockdown, suggesting that FACT functions during DNA replication in tumor cells but not in normal cells. We hypothesized that the basal level of replication stress defines the FACT dependence of cells. Using genetic and chemical tools, we demonstrated that FACT is needed to overcome replication stress. In the absence of FACT during replication stress, the MCM2-7 helicase dissociates from chromatin, resulting in the absence of ssDNA accumulation, RPA binding, and activation of the ATR/CHK1 checkpoint response. Without this response, stalled replication forks are not stabilized, and new origin firing cannot be prevented, leading to the accumulation of DNA damage and cell death. Thus, we propose a novel role for FACT as a factor preventing helicase dissociation from chromatin during replication stress.
Keyphrases
  • dna damage
  • cell death
  • induced apoptosis
  • cell cycle arrest
  • gene expression
  • stress induced
  • dna methylation
  • genome wide
  • transcription factor
  • heat shock protein
  • cell cycle
  • heat shock
  • electron transfer