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February 9, 2026Cancer Letters1 citationsOpen Access

Targeting ATR signaling in sarcoma with homologous recombination deficiency

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LPL. Planas-PazMZM. ZehnderNDN. Desboeufs

Key Points

  • The study aims to explore the therapeutic potential of targeting ATR signaling in sarcoma patients with homologous recombination deficiency.
  • Identified the SARC-HRD signature using gene expression analysis in sarcoma patients.
  • Stratified cohorts based on SARC-HRD and assessed its association with other biomarkers and survival outcomes.
  • Conducted pharmacotyping in patient-derived cell models to identify drug targets in the DNA damage response.
  • Tested ATR, CHK1, and WEE1 inhibitors for synthetic lethality in sarcoma cells with HRD traits.
  • Performed combinatorial drug testing to find effective drug combinations.
  • SARC-HRD signature stratifies sarcoma patients and correlates with poor metastasis-free survival.
  • Targeting ATR, CHK1, and WEE1 led to synthetic lethality and increased ATR signaling in HRD sarcoma cells.
  • Combinatorial drug testing revealed synergistic effects with ATRi, WEE1i, and PARP1/2i combinations.
  • Mechanistic studies showed impairment in DNA replication and increased apoptosis upon ATR inhibition.

Abstract

Homologous recombination deficiency (HRD) has emerged as a key vulnerability in selected cancer types and is associated with response to platinum and PARPi-based treatment strategies. However, additional biomarkers and targeted therapy options are needed to broaden the range of patients that could benefit from this therapeutic niche. Here, we show that the SARC-HRD signature, composed of ten genes of the homologous recombination repair pathway, stratifies a cohort of sarcoma patients, and associates with genomic biomarkers of HRD, with disease progression and with the CINSARC prognostic signature. Equivalently to CINSARC, high levels of SARC-HRD are associated with poor metastasis-free survival, underscoring the potential of SARC-HRD to predict disease outcome. By pharmacotyping patient-derived cell models, we identified promising drug targets within the DNA damage response for sarcoma with HRD traits. Inhibition of ATR, CHK1 and WEE1 elicited synthetic lethality in sarcoma cells with HRD, which concomitantly showed an upregulation of ATR signaling. Combinatorial drug testing further revealed synergistic drug combinations between ATRi, WEE1i, PARP1/2i and chemotherapeutic agents with potential clinical impact. Mechanistically, targeting ATR signaling at multiple levels induced a replication defect, mitotic abnormalities and apoptotic cell death. Taken together, our results demonstrate the therapeutic benefit of targeting DDR mechanisms in sarcoma with HRDness traits and their potential clinical utility for treating a broader spectrum of tumor types.

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Cite This Study

Planas-Paz et al. (2026) studied this question.

synapsesocial.com/papers/698978dff0ec2af6756e713dhttps://doi.org/10.1016/j.canlet.2026.218300
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