Literature DB >> 32669666

CFTR is a negative regulator of γδ T cell IFN-γ production and antitumor immunity.

Yuanyuan Duan1,2, Guangqiang Li1,2, Miaomiao Xu1,2, Xiaofei Qi3, Mingxia Deng1,2, Xuejia Lin1,2, Zhiwei Lei2, Yi Hu1,2, Zhenghu Jia1,2,4, Quanli Yang1,2,4, Guangchao Cao1,2, Zonghua Liu1,2, Qiong Wen1,2, Zhenhua Li1,2, Jie Tang3, Wei Kevin Zhang5, Pingbo Huang6, Limin Zheng7, Richard A Flavell8, Jianlei Hao9,10, Zhinan Yin11,12.   

Abstract

CFTR, a chloride channel and ion channel regulator studied mostly in epithelial cells, has been reported to participate in immune regulation and likely affect the risk of cancer development. However, little is known about the effects of CFTR on the differentiation and function of γδ T cells. In this study, we observed that CFTR was functionally expressed on the cell surface of γδ T cells. Genetic deletion and pharmacological inhibition of CFTR both increased IFN-γ release by peripheral γδ T cells and potentiated the cytolytic activity of these cells against tumor cells both in vitro and in vivo. Interestingly, the molecular mechanisms underlying the regulation of γδ T cell IFN-γ production by CFTR were either TCR dependent or related to Ca2+ influx. CFTR was recruited to TCR immunological synapses and attenuated Lck-P38 MAPK-c-Jun signaling. In addition, CFTR was found to modulate TCR-induced Ca2+ influx and membrane potential (Vm)-induced Ca2+ influx and subsequently regulate the calcineurin-NFATc1 signaling pathway in γδ T cells. Thus, CFTR serves as a negative regulator of IFN-γ production in γδ T cells and the function of these cells in antitumor immunity. Our investigation suggests that modification of the CFTR activity of γδ T cells may be a potential immunotherapeutic strategy for cancer.
© 2020. CSI and USTC.

Entities:  

Keywords:  Antitumor immunity; CFTR; Membrane potential; TCR; γδ T cells

Mesh:

Substances:

Year:  2020        PMID: 32669666      PMCID: PMC8322328          DOI: 10.1038/s41423-020-0499-3

Source DB:  PubMed          Journal:  Cell Mol Immunol        ISSN: 1672-7681            Impact factor:   22.096


  58 in total

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9.  Second messenger role for Mg2+ revealed by human T-cell immunodeficiency.

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  1 in total

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Journal:  Front Immunol       Date:  2022-01-21       Impact factor: 7.561

  1 in total

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