interferon and immune responses Open access Peer reviewed

Lactate‐Induced K370 Lactylation of STING Inhibits STING‐TBK1 Signaling and Dampens Anti‐Tumor Immunity

Yueyao Wu, Jingzhe Wang, Xu Chen, Yuntong Yang and 8 more

Advanced Science | Aug 15, 2026

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In conclusion, the findings identify STING K370 lactylation as a metabolic regulatory node restraining STING signaling and provide a rationale for combining lactate-targeted metabolic intervention with STING-based immunotherapy.

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The stimulator of interferon genes (STING) pathway represents a central component of innate anti-tumor immunity; however, the efficacy of STING-targeted therapies is frequently limited by tumor-intrinsic resistance mechanisms. Here, we identify lactate-driven lactylation of STING at lysine 370 (K370), a primate-conserved site, as a metabolic checkpoint restraining STING activation. Mechanistically, K370 lactylation directly weakens STING-TBK1 interaction. In parallel, K370 lactylation rewires STING ubiquitin linkage preference by increasing K48- and decreasing K63-linked ubiquitination, thereby limiting protein stability and oligomerization. Moreover, K370 lactylation weakens the interaction between STING and the COPII component SEC24A, impairing ER-to-Golgi trafficking-a spatial step that normally amplifies STING-TBK1 phosphorylation and downstream signaling cascades. Conversely, inhibition of lactate production diminishes K370 lactylation, restores STING-TBK1 association, stabilizes STING, and permits efficient ER-to-Golgi translocation, thereby enabling robust type I interferon signaling upon pathway stimulation. Pharmacological LDHA inhibition potentiates STING signaling and enhances the therapeutic efficacy of STING agonism alone or in combination with PD-1 blockade in patient-derived tumor models and orthotopic glioblastoma mouse models. In conclusion, our findings identify STING K370 lactylation as a metabolic regulatory node restraining STING signaling and provide a rationale for combining lactate-targeted metabolic intervention with STING-based immunotherapy.

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Yueyao Wu

first | Shanghai East Hospital | ORCID 0009-0007-6499-1201

Jingzhe Wang

middle | Shanghai East Hospital

Xu Chen

middle | Shanghai East Hospital | ORCID 0000-0001-8926-3090

Yuntong Yang

middle | Shanghai East Hospital | ORCID 0000-0003-3611-5443

Ping Wei

middle | Shanghai East Hospital

Han Xie

middle | Shanghai East Hospital | ORCID 0000-0002-2089-5644

Honghao Wang

middle | Shanghai East Hospital | ORCID 0000-0002-2030-180X

Chunyu Zhang

middle | Shanghai East Hospital | ORCID 0000-0003-0448-1756

Siyi Xu

middle | Shanghai East Hospital | ORCID 0000-0002-5147-2644

Qi Wang

middle | Shanghai East Hospital

Chunlong Zhong

middle | Shanghai East Hospital | ORCID 0000-0002-0605-7273

Jing Zhang

last | Shanghai East Hospital | ORCID 0000-0003-3155-6768

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BibTeX

@article{Wu2026Lactate,
  title = {Lactate‐Induced K370 Lactylation of STING Inhibits STING‐TBK1 Signaling and Dampens Anti‐Tumor Immunity},
  author = {Yueyao Wu and Jingzhe Wang and Xu Chen and Yuntong Yang and Ping Wei and Han Xie and Honghao Wang and Chunyu Zhang and Siyi Xu and Qi Wang and Chunlong Zhong and Jing Zhang},
  journal = {Advanced Science},
  year = {2026},
  doi = {10.1002/advs.77209},
  url = {https://doi.org/10.1002/advs.77209}
}

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