1. Academic Validation
  2. DFFB suppresses interferon to enable cancer persister cell regrowth

DFFB suppresses interferon to enable cancer persister cell regrowth

  • bioRxiv. 2025 Aug 21:2025.08.15.670603. doi: 10.1101/2025.08.15.670603.
August F Williams 1 David A G Gervasio 1 Claire E Turkal 1 Anna E Stuhlfire 1 Michael X Wang 1 Brandon E Mauch 1 Rhea Plawat 1 Ariel H Nguyen 1 Michelle H Paw 1 Mehrshad Hairani 1 Cooper P Lathrop 1 Sophie H Harris 1 Jennifer L Page 2 Matthew J Hangauer 1 3 4
Affiliations

Affiliations

  • 1 Department of Dermatology, School of Medicine, University of California San Diego.
  • 2 Stem Cell Core, Salk Institute for Biological Studies, La Jolla, CA.
  • 3 Moores Cancer Center, University of California San Diego.
  • 4 Altman Clinical and Translational Research Institute, University of California San Diego.
Abstract

Oncogene targeted Cancer therapies can provide deep responses but frequently suffer from acquired resistance.1 Therapeutic approaches to treat tumours which have acquired drug resistance are complicated by continual tumour evolution and multiple co-occurring resistance mechanisms.2,3 Rather than treating resistance after it emerges, it may possible to prevent it by inhibiting the adaptive processes which initiate resistance but these are poorly understood.4 Here we report that residual Cancer persister cells that survive oncogene targeted therapy are growth arrested by drug stress-induced intrinsic Type I interferon (IFN) signaling. To escape growth arrest, persister cells leverage apoptotic machinery to transcriptionally suppress interferon-stimulated genes (ISGs). Mechanistically, persister cells sublethally engage apoptotic caspases to activate DNA Endonuclease DNA Fragmentation Factor B (DFFB, also known as Caspase-Activated DNase (CAD)) which induces DNA damage, mutagenesis, and stress response factor Activating Transcription Factor 3 (ATF3). ATF3 limits Activator Protein-1 (AP1)-mediated ISG expression sufficiently to allow persister cell regrowth. Persister cells deficient in DFFB or ATF3 exhibit high ISG expression and are consequently unable to regrow. Therefore, sublethal apoptotic stress paradoxically promotes regrowth of residual Cancer cells that survive drug treatment.

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