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Selective therapeutic strategy for p53-deficient cancer by targeting dysregulation in DNA repair.


ABSTRACT: Breast carcinomas commonly carry mutations in the tumor suppressor p53, although therapeutic efforts to target mutant p53 have previously been unfruitful. Here we report a selective combination therapy strategy for treatment of p53 mutant cancers. Genomic data revealed that p53 mutant cancers exhibit high replication activity and express high levels of the Base-Excision Repair (BER) pathway, whereas experimental testing showed substantial dysregulation in BER. This defect rendered accumulation of DNA damage in p53 mutant cells upon treatment with deoxyuridine analogues. Notably, inhibition of poly (ADP-ribose) polymerase (PARP) greatly enhanced this response, whereas normal cells responded with activation of the p53-p21 axis and cell cycle arrest. Inactivation of either p53 or p21/CDKN1A conferred the p53 mutant phenotype. Preclinical animal studies demonstrated a greater anti-neoplastic efficacy of the drug combination (deoxyuridine analogue and PARP inhibitor) than either drug alone. This work illustrates a selective combination therapy strategy for p53 mutant cancers that will improve survival rates and outcomes for thousands of breast cancer patients.

SUBMITTER: Zonneville J 

PROVIDER: S-EPMC8275734 | biostudies-literature | 2021 Jul

REPOSITORIES: biostudies-literature

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Selective therapeutic strategy for p53-deficient cancer by targeting dysregulation in DNA repair.

Zonneville Justin J   Wang Moyi M   Alruwaili Mohammed M MM   Smith Brandon B   Melnick Megan M   Eng Kevin H KH   Melendy Thomas T   Park Ben Ho BH   Iyer Renuka R   Fountzilas Christos C   Bakin Andrei V AV  

Communications biology 20210712 1


Breast carcinomas commonly carry mutations in the tumor suppressor p53, although therapeutic efforts to target mutant p53 have previously been unfruitful. Here we report a selective combination therapy strategy for treatment of p53 mutant cancers. Genomic data revealed that p53 mutant cancers exhibit high replication activity and express high levels of the Base-Excision Repair (BER) pathway, whereas experimental testing showed substantial dysregulation in BER. This defect rendered accumulation o  ...[more]

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