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Targeting ATR Pathway in Solid Tumors: Evidence of Improving Therapeutic Outcomes
Dimitra Mavroeidi1,2, Anastasia Georganta2, Emmanouil Panagiotou2
1Institute of Chemical Biology, National Hellenic Research Foundation, 116 35 Athens, Greece.
Abstract:
The DNA damage response (DDR) system is a complicated network of signaling pathways that detects and repairs DNA damage or induces apoptosis. Critical regulators of the DDR network include the DNA damage kinases ataxia telangiectasia mutated Rad3-related kinase (ATR) and ataxia-telangiectasia mutated (ATM). The ATR pathway coordinates processes such as replication stress response, stabilization of replication forks, cell cycle arrest, and DNA repair. ATR inhibition disrupts these functions, causing a reduction of DNA repair, accumulation of DNA damage, replication fork collapse, inappropriate mitotic entry, and mitotic catastrophe. Recent data have shown that the inhibition of ATR can lead to synthetic lethality in ATM-deficient malignancies. In addition, ATR inhibition plays a significant role in the activation of the immune system by increasing the tumor mutational burden and neoantigen load as well as by triggering the accumulation of cytosolic DNA and subsequently inducing the cGAS-STING pathway and the type I IFN response. Taken together, we review stimulating data showing that ATR kinase inhibition can alter the DDR network, the immune system, and their interplay and, therefore, potentially provide a novel strategy to improve the efficacy of antitumor therapy, using ATR inhibitors as monotherapy or in combination with genotoxic drugs and/or immunomodulators.
Insights
ATR kinase inhibition disrupts DNA repair and enhances anti-tumor immunity. This strategy shows promise for improving cancer therapies by targeting the DNA damage response and immune system interplay.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- The DNA damage response (DDR) network is crucial for maintaining genomic stability, involving kinases like ATR and ATM.
- ATR pathway regulates replication stress, fork stabilization, cell cycle arrest, and DNA repair.
Purpose of the Study:
- To review the impact of ATR kinase inhibition on the DDR network and immune system.
- To explore the potential of ATR inhibitors as a novel anti-tumor therapy strategy.
Main Methods:
- Review of recent data on ATR inhibition in cancer research.
- Analysis of ATR's role in synthetic lethality and immune system activation.
Main Results:
- ATR inhibition disrupts DNA repair, leading to DNA damage accumulation and replication fork collapse.
- ATR inhibition can induce synthetic lethality in ATM-deficient cancers.
- ATR inhibition enhances anti-tumor immunity by increasing tumor mutational burden, neoantigen load, and activating the cGAS-STING pathway.
Conclusions:
- ATR kinase inhibition profoundly impacts the DDR network and immune system.
- ATR inhibitors offer a promising therapeutic strategy, as monotherapy or in combination treatments, to improve anti-tumor efficacy.
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