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.

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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