Myeloid-derived itaconate suppresses cytotoxic CD8+ T cells and promotes tumour growth

被引:0
|
作者
Hongyun Zhao
Da Teng
Lifeng Yang
Xincheng Xu
Jiajia Chen
Tengjia Jiang
Austin Y. Feng
Yaqing Zhang
Dennie T. Frederick
Lei Gu
Li Cai
John M. Asara
Marina Pasca di Magliano
Genevieve M. Boland
Keith T. Flaherty
Kenneth D. Swanson
David Liu
Joshua D. Rabinowitz
Bin Zheng
机构
[1] Massachusetts General Hospital and Harvard Medical School,Cutaneous Biology Research Center
[2] Princeton University,Department of Chemistry
[3] Princeton University,Lewis
[4] Chinese Academy of Sciences,Sigler Institute for Integrative Genomics
[5] Dana-Farber Cancer Institute,Shanghai Institute of Nutrition and Health, University of Chinese Academy of Sciences
[6] Broad Institute of MIT and Harvard,Department of Medical Oncology
[7] Max Planck Institute for Heart and Lung Research,Epigenetics Laboratory
[8] University of Michigan,Department of Surgery
[9] Massachusetts General Hospital Cancer Center,Department of Medicine
[10] University of Texas MD Anderson Cancer Center,Department of Cancer Biology
[11] Harvard Medical School,Division of Signal Transduction, Beth Israel Deaconess Medical Center and Department of Medicine
[12] University of Michigan,Department of Cell and Developmental Biology
[13] University of Michigan,Cancer Biology Program
[14] University of Michigan,Cellular and Molecular Biology Program
[15] University of Michigan,Rogel Cancer Center
[16] Massachusetts General Hospital,Department of Surgery
[17] Ludwig Institute for Cancer Research,undefined
[18] Princeton Branch,undefined
来源
Nature Metabolism | 2022年 / 4卷
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摘要
The tumour microenvironment possesses mechanisms that suppress anti-tumour immunity. Itaconate is a metabolite produced from the Krebs cycle intermediate cis-aconitate by the activity of immune-responsive gene 1 (IRG1). While it is known to be immune modulatory, the role of itaconate in anti-tumour immunity is unclear. Here, we demonstrate that myeloid-derived suppressor cells (MDSCs) secrete itaconate that can be taken up by CD8+ T cells and suppress their proliferation, cytokine production and cytolytic activity. Metabolite profiling, stable-isotope tracing and metabolite supplementation studies indicated that itaconate suppressed the biosynthesis of aspartate and serine/glycine in CD8+ T cells to attenuate their proliferation and function. Host deletion of Irg1 in female mice bearing allografted tumours resulted in decreased tumour growth, inhibited the immune-suppressive activities of MDSCs, promoted anti-tumour immunity of CD8+ T cells and enhanced the anti-tumour activity of anti-PD-1 antibody treatment. Furthermore, we found a significant negative correlation between IRG1 expression and response to PD-1 immune checkpoint blockade in patients with melanoma. Our findings not only reveal a previously unknown role of itaconate as an immune checkpoint metabolite secreted from MDSCs to suppress CD8+ T cells, but also establish IRG1 as a myeloid-selective target in immunometabolism whose inhibition promotes anti-tumour immunity and enhances the efficacy of immune checkpoint protein blockade.
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页码:1660 / 1673
页数:13
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