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Detection of Targetable Alterations in Non-small Cell Lung Cancer using Next-generation Sequencing
Published on: October 10, 2025
Targeting DNA Damage Response Promotes Antitumor Immunity through STING-Mediated T-cell Activation in Small Cell Lung
Triparna Sen1, B Leticia Rodriguez1, Limo Chen1
1Department of Thoracic/Head and Neck Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Abstract:
Despite recent advances in the use of immunotherapy, only a minority of patients with small cell lung cancer (SCLC) respond to immune checkpoint blockade (ICB). Here, we show that targeting the DNA damage response (DDR) proteins PARP and checkpoint kinase 1 (CHK1) significantly increased protein and surface expression of PD-L1. PARP or CHK1 inhibition remarkably potentiated the antitumor effect of PD-L1 blockade and augmented cytotoxic T-cell infiltration in multiple immunocompetent SCLC in vivo models. CD8+ T-cell depletion reversed the antitumor effect, demonstrating the role of CD8+ T cells in combined DDR-PD-L1 blockade in SCLC. We further demonstrate that DDR inhibition activated the STING/TBK1/IRF3 innate immune pathway, leading to increased levels of chemokines such as CXCL10 and CCL5 that induced activation and function of cytotoxic T lymphocytes. Knockdown of cGAS and STING successfully reversed the antitumor effect of combined inhibition of DDR and PD-L1. Our results define previously unrecognized innate immune pathway-mediated immunomodulatory functions of DDR proteins and provide a rationale for combining PARP/CHK1 inhibitors and immunotherapies in SCLC. SIGNIFICANCE: Our results define previously unrecognized immunomodulatory functions of DDR inhibitors and suggest that adding PARP or CHK1 inhibitors to ICB may enhance treatment efficacy in patients with SCLC. Furthermore, our study supports a role of innate immune STING pathway in DDR-mediated antitumor immunity in SCLC.See related commentary by Hiatt and MacPherson, p. 584.This article is highlighted in the In This Issue feature, p. 565.
Insights
Targeting DNA damage response (DDR) proteins PARP or CHK1 enhances immunotherapy for small cell lung cancer (SCLC) by increasing PD-L1 expression and T-cell infiltration. This combination strategy shows significant antitumor effects in preclinical SCLC models.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Limited response rates to immune checkpoint blockade (ICB) in small cell lung cancer (SCLC).
- Need for novel therapeutic strategies to enhance immunotherapy efficacy in SCLC.
Purpose of the Study:
- To investigate the potential of targeting DNA damage response (DDR) proteins, PARP and CHK1, in combination with PD-L1 blockade for SCLC treatment.
- To elucidate the underlying mechanisms of DDR inhibition-mediated immune modulation in SCLC.
Main Methods:
- Utilized immunocompetent SCLC in vivo models.
- Administered PARP or CHK1 inhibitors in combination with PD-L1 blockade.
- Assessed PD-L1 expression, cytotoxic T-cell infiltration, and innate immune pathway activation (STING/TBK1/IRF3).
Main Results:
- PARP or CHK1 inhibition significantly increased PD-L1 expression and potentiated the antitumor effects of PD-L1 blockade.
- Combined inhibition augmented CD8+ T-cell infiltration, which was crucial for the observed antitumor response.
- DDR inhibition activated the STING/TBK1/IRF3 pathway, increasing chemokines that enhanced cytotoxic T-lymphocyte function.
Conclusions:
- Targeting DDR proteins (PARP/CHK1) in combination with ICB offers a promising therapeutic strategy for SCLC.
- DDR inhibitors modulate the tumor microenvironment by activating innate immune pathways, enhancing adaptive anti-tumor immunity.
- This study provides a strong rationale for clinical trials combining DDR inhibitors and immunotherapy in SCLC patients.
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