Gene interactions and pathways from curated databases and text-mining
EMBO Mol Med 2012, PMID: 22416035

Enhanced cytotoxicity of PARP inhibition in mantle cell lymphoma harbouring mutations in both ATM and p53.

Williamson, Chris T; Kubota, Eiji; Hamill, Jeffrey D; Klimowicz, Alexander; Ye, Ruiqiong; Muzik, Huong; Dean, Michelle; Tu, LiRen; Gilley, David; Magliocco, Anthony M; McKay, Bruce C; Bebb, D Gwyn; Lees-Miller, Susan P

Poly-ADP ribose polymerase (PARP) inhibitors have shown promise in the treatment of human malignancies characterized by deficiencies in the DNA damage repair proteins BRCA1 and BRCA2 and preclinical studies have demonstrated the potential effectiveness of PARP inhibitors in targeting ataxia-telangiectasia mutated (ATM)-deficient tumours. Here, we show that mantle cell lymphoma (MCL) cells deficient in both ATM and p53 are more sensitive to the PARP inhibitor olaparib than cells lacking ATM function alone. In ATM-deficient MCL cells, olaparib induced DNA-PK-dependent phosphorylation and stabilization of p53 as well as expression of p53-responsive cell cycle checkpoint regulators, and inhibition of DNA-PK reduced the toxicity of olaparib in ATM-deficient MCL cells. Thus, both DNA-PK and p53 regulate the response of ATM-deficient MCL cells to olaparib. In addition, small molecule inhibition of both ATM and PARP was cytotoxic in normal human fibroblasts with disruption of p53, implying that the combination of ATM and PARP inhibitors may have utility in targeting p53-deficient malignancies.

Diseases/Pathways annotated by Medline MESH: Disease Models, Animal, Lymphoma, Mantle-Cell
Document information provided by NCBI PubMed

Text Mining Data

p53 → DNA-PK: " In ATM-deficient MCL cells, olaparib induced DNA-PK dependent phosphorylation and stabilization of p53 as well as expression of p53-responsive cell cycle checkpoint regulators, and inhibition of DNA-PK reduced the toxicity of olaparib in ATM-deficient MCL cells "

Manually curated Databases

No curated data.