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Targeting Ribonucleotide Reductase Induces Synthetic Lethality in PP2A-Deficient Uterine Serous Carcinoma
Caitlin M O'Connor1,2, Sarah E Taylor3, Kathryn M Miller4
1Division of Genetic Medicine, Department of Internal Medicine, The University of Michigan, Ann Arbor, Michigan.
Abstract:
Uterine serous carcinoma (USC) is a highly aggressive endometrial cancer subtype with limited therapeutic options and a lack of targeted therapies. While mutations to PPP2R1A, which encodes the predominant protein phosphatase 2A (PP2A) scaffolding protein Aα, occur in 30% to 40% of USC cases, the clinical actionability of these mutations has not been studied. Using a high-throughput screening approach, we showed that mutations in Aα results in synthetic lethality following treatment with inhibitors of ribonucleotide reductase (RNR). In vivo, multiple models of Aα mutant uterine serous tumors were sensitive to clofarabine, an RNR inhibitor (RNRi). Aα-mutant cells displayed impaired checkpoint signaling upon RNRi treatment and subsequently accumulated more DNA damage than wild-type (WT) cells. Consistently, inhibition of PP2A activity using LB-100, a catalytic inhibitor, sensitized WT USC cells to RNRi. Analysis of The Cancer Genome Atlas data indicated that inactivation of PP2A, through loss of PP2A subunit expression, was prevalent in USC, with 88% of patients with USC harboring loss of at least one PP2A gene. In contrast, loss of PP2A subunit expression was rare in uterine endometrioid carcinomas. While RNRi are not routinely used for uterine cancers, a retrospective analysis of patients treated with gemcitabine as a second- or later-line therapy revealed a trend for improved outcomes in patients with USC treated with RNRi gemcitabine compared with patients with endometrioid histology. Overall, our data provide experimental evidence to support the use of ribonucleotide reductase inhibitors for the treatment of USC.
Significance:
A drug repurposing screen identifies synthetic lethal interactions in PP2A-deficient uterine serous carcinoma, providing potential therapeutic avenues for treating this deadly endometrial cancer.
Insights
Mutations in PPP2R1A (Aα) in uterine serous carcinoma (USC) create a synthetic lethality vulnerability. Inhibitors of ribonucleotide reductase (RNRi) exploit this, offering a potential new therapy for this aggressive cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Uterine serous carcinoma (USC) is an aggressive endometrial cancer subtype with limited treatment options.
- Mutations in PPP2R1A, encoding the PP2A scaffolding protein Aα, occur in 30-40% of USC cases.
- The clinical utility of targeting Aα mutations in USC remains largely unexplored.
Purpose of the Study:
- To identify therapeutic vulnerabilities in Aα-mutant USC.
- To evaluate the efficacy of ribonucleotide reductase inhibitors (RNRi) in preclinical models of USC.
- To investigate the underlying mechanisms of RNRi sensitivity in Aα-mutant USC.
Main Methods:
- High-throughput drug screening to identify synthetic lethal interactions.
- In vivo efficacy studies using clofarabine (an RNRi) in USC tumor models.
- Analysis of DNA damage and checkpoint signaling pathways.
- Evaluation of The Cancer Genome Atlas (TCGA) data for PP2A subunit expression.
- Retrospective analysis of patient data for RNRi treatment outcomes.
Main Results:
- Aα mutations in USC confer synthetic lethality upon treatment with RNR inhibitors.
- Aα-mutant USC models showed sensitivity to clofarabine, with impaired checkpoint signaling and increased DNA damage.
- Inhibition of PP2A sensitized wild-type USC cells to RNRi.
- Loss of PP2A subunit expression is prevalent in USC (88%) but rare in endometrioid histology.
- A trend for improved outcomes was observed in USC patients treated with RNRi gemcitabine.
Conclusions:
- Targeting ribonucleotide reductase offers a promising therapeutic strategy for USC, particularly in cases with PPP2R1A mutations.
- The study provides a mechanistic rationale for using RNR inhibitors in USC treatment.
- PP2A deficiency is a common feature in USC, suggesting broader implications for PP2A-targeted therapies.
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