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Citraconate preserves T cell stemness and antitumor immunity

  • Wenhui Li
  • , Minmin Ge
  • , Ziyi Luo
  • , Minju Ni
  • , Kexin Tang
  • , Chenfeng Han
  • , Jiajia Wang
  • , Yifu Ma
  • , Xiaowei Liu
  • , Kaili Ma
  • , Jingxing Yang
  • , Wenjing Li
  • , Cangang Zhang
  • , Qitai Zhao
  • , Guangcan Shao
  • , Jaeoh Park
  • , Yi Zhang
  • , Yonghong Wan
  • , Baojun Zhang
  • , Gang Wang
  • Mingjing Shen, Qiang Shan, Feng Guo, Ping Chih Ho, Liyuan Zhang, Lianjun Zhang
  • Suzhou Institute of Systems Medicine, Chinese Academy of Medical Sciences & Peking Union Medical College
  • Second Affiliated Hospital of Soochow University
  • Nanjing Medical University
  • Xi'an Jiaotong University
  • Xi’an Key Laboratory of Immune Related Diseases
  • First Affiliated Hospital of Zhengzhou University
  • University of Lausanne
  • McMaster University
  • Xuzhou Medical University

科研成果: 期刊稿件文章同行评审

摘要

Metabolic perturbations in the tumor microenvironment profoundly compromise the stemlike properties and effector functions of CD8 T cells. Deciphering the metabolic circuitry that sustains T cell stemness is critical for reinvigorating tumor-infiltrating lymphocytes and augmenting immunotherapeutic efficacy. Here, we identify citraconate, an itaconate isomer, as a metabolite markedly depleted in CD8 T cells subjected to chronic antigen stimulation or hypoxic conditions. Citraconate supplementation preserves stemlike characteristics, attenuates ferroptosis, and potentiates T cell-mediated antitumor immunity. Mechanistically, citraconate maintains intracellular cyclic adenosine monophosphate (cAMP) concentrations by suppressing phosphodiesterase1A/C (PDE1A/C) expression and preserving mitochondrial integrity, thereby activating protein kinase A (PKA) signaling. This activation transcriptionally represses arachidonate-5-lipoxygenase (ALOX5), consequently reducing arachidonic acid peroxidation. Clinically, diminished ALOX5 or PDE1A expression correlates with reduced T cell exhaustion and improved responses to immune checkpoint blockade (ICB) therapy. Our findings reveal the citraconate-mediated PDE1-cAMP-ALOX5 axis as a potential therapeutic target for enhancing cancer immunotherapy.

源语言英语
页(从-至)eadz0348
期刊Science Immunology
11
119
DOI
出版状态已出版 - 1 5月 2026

联合国可持续发展目标

此成果有助于实现下列可持续发展目标:

  1. 可持续发展目标 3 - 良好健康与福祉
    可持续发展目标 3 良好健康与福祉

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