콘텐츠로 건너뛰기
Merck
  • Reprogramming of nucleotide metabolism by interferon confers dependence on the replication stress response pathway in pancreatic cancer cells.

Reprogramming of nucleotide metabolism by interferon confers dependence on the replication stress response pathway in pancreatic cancer cells.

Cell reports (2022-01-13)
Evan R Abt, Thuc M Le, Amanda M Dann, Joseph R Capri, Soumya Poddar, Vincent Lok, Luyi Li, Keke Liang, Amanda L Creech, Khalid Rashid, Woosuk Kim, Nanping Wu, Jing Cui, Arthur Cho, Hailey Rose Lee, Ethan W Rosser, Jason M Link, Johannes Czernin, Ting-Ting Wu, Robert Damoiseaux, David W Dawson, Timothy R Donahue, Caius G Radu
초록

We determine that type I interferon (IFN) response biomarkers are enriched in a subset of pancreatic ductal adenocarcinoma (PDAC) tumors; however, actionable vulnerabilities associated with IFN signaling have not been systematically defined. Integration of a phosphoproteomic analysis and a chemical genomics synergy screen reveals that IFN activates the replication stress response kinase ataxia telangiectasia and Rad3-related protein (ATR) in PDAC cells and sensitizes them to ATR inhibitors. IFN triggers cell-cycle arrest in S-phase, which is accompanied by nucleotide pool insufficiency and nucleoside efflux. In combination with IFN, ATR inhibitors induce lethal DNA damage and downregulate nucleotide biosynthesis. ATR inhibition limits the growth of PDAC tumors in which IFN signaling is driven by stimulator of interferon genes (STING). These results identify a cross talk between IFN, DNA replication stress response networks, and nucleotide metabolism while providing the rationale for targeted therapeutic interventions that leverage IFN signaling in tumors.

MATERIALS
제품 번호
브랜드
제품 설명

Sigma-Aldrich
Anti-DNA Antibody, single stranded specific, clone F7-26, clone F7-26, Chemicon®, from mouse
Sigma-Aldrich
Anti-NT5C3A antibody produced in rabbit, Prestige Antibodies® Powered by Atlas Antibodies, affinity isolated antibody, buffered aqueous glycerol solution