Related Experiment Video
Updated: Jun 30, 2025

Surface-enhanced Resonance Raman Scattering Nanoprobe Ratiometry for Detecting Microscopic Ovarian Cancer via Folate Receptor Targeting
Published on: March 25, 2019
AKTing on R Loops Makes for an ATRactive Target in Ovarian Cancer Therapy
Vijayalalitha Ramanarayanan1, Philipp Oberdoerffer1
1Department of Radiation Oncology & Molecular Radiation Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Abstract:
High-grade serous ovarian carcinoma (HGSOC) is the deadliest subtype of ovarian cancer. While PARP inhibitors (PARPi) have transformed the care of advanced HGSOC, PARPi resistance poses a major limitation to their clinical utility. DNA damage checkpoint signaling via ATR kinase can counteract PARPi-induced replication stress, making ATR an attractive therapeutic target in PARPi-resistant tumors. However, ATR inhibitor (ATRi) efficacy in the clinic is low, emphasizing the need for suitable combination treatments. In this issue of Cancer Research, Huang and colleagues uncovered cytotoxic synergism between inhibition of the PI3K/AKT pathway and ATR based on high-throughput screening for ATRi drug combinations in PARPi-resistant HGSOC cells. Dual inhibition of ATR and AKT resulted in aberrant replication stress and cell death, which was attributed in part to impaired resolution of replication-stalling RNA:DNA hybrids (R loops). The authors identified the DNA/RNA helicase DHX9 as a clinically relevant candidate effector of R loop resolution in HGSOC. AKT interacted with and recruited DHX9 to R loops, where it complemented ATR in facilitating their removal. Underlining the therapeutic potential relevance of these findings, combined inhibition of ATR and AKT caused near complete tumor regression in HGSOC xenograft models, and elevated AKT/DHX9 levels correlated with poor survival in patients with HGSOC. Of note, the genotoxic consequences of dual ATRi/AKTi treatment extended beyond PARPi-resistant tumors and are likely to affect genome integrity beyond R loops. The work by Huang and colleagues thus provides compelling rationale for the exploration of combined targeting of the AKT and ATR pathways as a potentially broadly applicable treatment of advanced HGSOC. See related article by Huang et al., p. 887.
Insights
Combining ATR and AKT inhibitors shows promise for treating high-grade serous ovarian cancer (HGSOC). This dual inhibition overcomes PARP inhibitor resistance by targeting DNA repair pathways and R loop resolution, leading to tumor regression in models.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- High-grade serous ovarian carcinoma (HGSOC) is a lethal cancer with limited treatment options.
- PARP inhibitors (PARPi) are effective but resistance is a significant clinical challenge.
- ATR kinase is a target in PARPi-resistant tumors, but ATR inhibitors (ATRi) alone have low efficacy.
Purpose of the Study:
- To identify effective drug combinations for PARPi-resistant HGSOC.
- To investigate the synergistic effects of ATR inhibitors with other pathway inhibitors.
- To elucidate the molecular mechanisms underlying ATRi combination therapy efficacy.
Main Methods:
- High-throughput screening of ATRi drug combinations in PARPi-resistant HGSOC cells.
- Assessing replication stress, cell death, and R loop resolution.
- Investigating the role of DHX9 in R loop resolution and its interaction with AKT.
- Evaluating tumor regression in HGSOC xenograft models.
Main Results:
- Dual inhibition of ATR and AKT kinases demonstrated cytotoxic synergism in PARPi-resistant HGSOC cells.
- Combined ATR and AKT inhibition led to aberrant replication stress and impaired R loop resolution.
- The DNA/RNA helicase DHX9 was identified as a key mediator of R loop resolution, recruited by AKT.
- Near-complete tumor regression was observed in HGSOC xenograft models treated with combined ATRi/AKTi.
Conclusions:
- Combined targeting of ATR and AKT pathways offers a promising therapeutic strategy for advanced HGSOC, particularly in PARPi-resistant cases.
- The interplay between AKT, DHX9, and ATR in R loop resolution is crucial for HGSOC cell survival.
- Elevated AKT/DHX9 levels correlate with poor patient survival, highlighting their clinical relevance.

