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Hypoxia Induces Mitochondrial Defect That Promotes T Cell Exhaustion in Tumor Microenvironment Through MYC-Regulated Pathways
Yina Liu, Jiefeng Yang, Dai-jia Huang, Huan-he Ni, Chuan-Xia Zhang, Lin Zhang, Jia He, Jiamei Gu, Hongxia Chen, Hai‐Qiang Mai, Qiuyan Chen, Xiaoshi Zhang, Song Gao, Li Jiang
Frontiers in Immunology · 2020 · ▲ 121 citations
Abstract
T cell exhaustion is an obstacle to immunotherapy for solid tumors. An understanding of the mechanism by which T cells develop this phenotype in solid tumors is needed. Here, hypoxia, a feature of the tumor microenvironment, causes T cell exhaustion (TExh) by inducing a mitochondrial defect. Upon exposure to hypoxia, activated T cells with a TExh phenotype are characterized by mitochondrial fragmentation, decreased ATP production, and decreased mitochondrial oxidative phosphorylation activity. The TExh phenotype is correlated with the downregulation of the mitochondrial fusion protein mitofusin 1 (MFN1) and upregulation of miR-24. Overexpression of miR-24 alters the transcription of many metabolism-related genes including its target genes MYC and fibroblast growth factor 11 (FGF11). Downregulation of MYC and FGF11 induces TExh differentiation, reduced ATP production and a loss of the mitochondrial mass in T cell receptor (TCR)-stimulated T cells. In addition, we determined that MYC regulates the transcription of FGF11 and MFN1. In nasopharyngeal carcinoma (NPC) tissues, the T cells exhibit an increased frequency of exhaustion and loss of mitochondrial mass. In addition, inhibition of miR-24 signaling decreases NPC xenograft growth in nude mice. Our findings reveal a mechanism for T cell exhaustion in the tumor environment and provide potential strategies that target mitochondrial metabolism for cancer immunotherapy.
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- 10.3389/fimmu.2020.01906
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- 2026-08-07 MST
Cite this
APA
Liu, Y., Yang, J., Huang, D., Ni, H., Zhang, C., Zhang, L., He, J., Gu, J., Chen, H., Mai, H., Chen, Q., Zhang, X., Gao, S., & Jiang, L. (2020). Hypoxia Induces Mitochondrial Defect That Promotes T Cell Exhaustion in Tumor Microenvironment Through MYC-Regulated Pathways. <em>Frontiers in Immunology</em>. https://doi.org/10.3389/fimmu.2020.01906
Vancouver
Liu Y, Yang J, Huang D, Ni H, Zhang C, Zhang L, et al. Hypoxia Induces Mitochondrial Defect That Promotes T Cell Exhaustion in Tumor Microenvironment Through MYC-Regulated Pathways. Frontiers in Immunology. 2020. doi:10.3389/fimmu.2020.01906.
BibTeX
@article{yina2020Hypoxi,
title = {Hypoxia Induces Mitochondrial Defect That Promotes T Cell Exhaustion in Tumor Microenvironment Through MYC-Regulated Pathways},
author = {Yina Liu and Jiefeng Yang and Dai-jia Huang and Huan-he Ni and Chuan-Xia Zhang and Lin Zhang and Jia He and Jiamei Gu and Hongxia Chen and Hai‐Qiang Mai and Qiuyan Chen and Xiaoshi Zhang and Song Gao and Li Jiang},
journal = {Frontiers in Immunology},
year = {2020},
doi = {10.3389/fimmu.2020.01906},
}
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