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Targeting KDM4 family epigenetically triggers antitumour immunity via enhancing tumour-intrinsic innate sensing and immunogenicity.

Mayu Sun | Xiaoyu Han | Jinyang Li | Jiali Zheng | Jingquan Li | Hui Wang | Xiaoguang Li
Clinical and translational medicine | 2024

Despite the remarkable clinical efficacy of cancer immunotherapy, considerable patients fail to benefit from it due to primary or acquired resistance. Tumours frequently hijack diverse epigenetic mechanisms to evade immune detection, thereby highlighting the potential for pharmacologically targeting epigenetic regulators to restore the impaired immunosurveillance and re-sensitise tumours to immunotherapy. Herein, we demonstrated that KDM4-targeting chemotherapeutic drug JIB-04, epigenetically triggered the tumour-intrinsic innate immune responses and immunogenic cell death (ICD), resulting in impressive antitumour effects. Specifically, JIB-04 induced H3K9 hypermethylation through specific inhibition of the KDM4 family (KDM4A-D), leading to impaired DNA repair signalling and subsequent DNA damage. As a result, JIB-04 not only activated the tumour-intrinsic cyclic GMP-AMP synthase (cGAS)-STING pathway via DNA-damage-induced cytosolic DNA accumulation, but also promoted ICD, releasing numerous damage-associated molecular patterns. Furthermore, JIB-04 induced adaptive resistance through the upregulation of programmed death-ligand 1 (PD-L1), which could be overcome with additional PD-L1 blockade. In human tumours, KDM4B expression was negatively correlated with clinical outcomes, type I interferon signatures, and responses to immunotherapy. In conclusion, our results demonstrate that targeting KDM4 family can activate tumour-intrinsic innate sensing and immunogenicity, and synergise with immunotherapy to improve antitumour outcomes.

Pubmed ID: 38390756

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: National Natural Science Foundation of China,
    Id: 81972820
  • Agency: National Natural Science Foundation of China,
    Id: 82030099
  • Agency: National Key R&D Program of China,
    Id: 2022YFD2101500
  • Agency: National Key R&D Program of China,
    Id: 2018YFC2000700
  • Agency: the Natural Science Foundation of Shanghai,
    Id: 23ZR1435900
  • Agency: Innovative Research Team of High-Level Local Universities in Shanghai and Shanghai Jiao Tong University Key Program of Medical Engineering,
    Id: YG2021ZD01
  • Agency: the Science and Technology Commission of Shanghai Municipality,
    Id: 22DZ2303000

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Thermo Fisher Scientific (tool)

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