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Targeting ATR in patients with cancer
Natalie Y L Ngoi1,2,3, Patrick G Pilié4, Daniel J McGrail5
1Department of Investigational Cancer Therapeutics (Phase I Clinical Trials Program), Division of Cancer Medicine, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Abstract:
Pharmacological inhibition of the ataxia telangiectasia and Rad3-related protein serine/threonine kinase (ATR; also known as FRAP-related protein (FRP1)) has emerged as a promising strategy for cancer treatment that exploits synthetic lethal interactions with proteins involved in DNA damage repair, overcomes resistance to other therapies and enhances antitumour immunity. Multiple novel, potent ATR inhibitors are being tested in clinical trials using biomarker-directed approaches and involving patients across a broad range of solid cancer types; some of these inhibitors have now entered phase III trials. Further insight into the complex interactions of ATR with other DNA replication stress response pathway components and with the immune system is necessary in order to optimally harness the potential of ATR inhibitors in the clinic and achieve hypomorphic targeting of the various ATR functions. Furthermore, a deeper understanding of the diverse range of predictive biomarkers of response to ATR inhibitors and of the intraclass differences between these agents could help to refine trial design and patient selection strategies. Key challenges that remain in the clinical development of ATR inhibitors include the optimization of their therapeutic index and the development of rational combinations with these agents. In this Review, we detail the molecular mechanisms regulated by ATR and their clinical relevance, and discuss the challenges that must be addressed to extend the benefit of ATR inhibitors to a broad population of patients with cancer.
Insights
Pharmacological inhibition of ataxia telangiectasia and Rad3-related protein (ATR) kinase is a promising cancer treatment. Further research is needed to optimize ATR inhibitors for broader patient benefit.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Ataxia telangiectasia and Rad3-related protein (ATR) kinase plays a crucial role in DNA damage repair and replication stress response.
- Pharmacological inhibition of ATR is an emerging strategy in cancer therapy, showing promise in synthetic lethality and overcoming treatment resistance.
Purpose of the Study:
- To review the molecular mechanisms regulated by ATR and their clinical relevance.
- To discuss the challenges and opportunities in developing ATR inhibitors for cancer treatment.
- To explore the potential of ATR inhibitors in enhancing anti-tumor immunity and combination therapies.
Main Methods:
- This review synthesizes current research on ATR kinase inhibitors.
- It analyzes data from ongoing clinical trials across various solid cancer types.
- The review integrates findings on ATR's interactions with DNA repair pathways and the immune system.
Main Results:
- Multiple novel ATR inhibitors are in clinical trials, with some progressing to Phase III.
- ATR inhibition demonstrates potential in exploiting synthetic lethality and overcoming therapy resistance.
- ATR inhibitors can enhance anti-tumor immunity, suggesting a role in immunotherapy.
Conclusions:
- Optimizing the therapeutic index and developing rational combinations are key challenges for ATR inhibitors.
- A deeper understanding of predictive biomarkers and intraclass differences is crucial for patient selection.
- Further research into ATR's complex interactions is necessary to maximize its clinical benefit in cancer patients.
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