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Reciprocal regulation of STING and TCR signaling by mTORC1 for T-cell activation and function

Authors :
Makoto Arita
Natsumi Yoneda
Midori Unno
Glen N. Barber
Kazutaka Ikeda
Satoshi Matsuda
Takayuki Imanishi
Takayuki Hoshii
Shizuo Akira
Takashi Saito
Ken Ishii
Kensuke Miyake
Atsushi Hirao
Wakana Kobayashi
Source :
Life Science Alliance
Publication Year :
2019
Publisher :
Life Science Alliance, LLC, 2019.

Abstract

Costimulation of T cells through both TCR and STING induces growth inhibition by partially blocking the mTORC1 signals, and leads to IFN-I production through sustained activation of IRF3 and mTORC1 activation.<br />Stimulator of interferon genes (STING) plays a key role in detecting cytosolic DNA and induces type I interferon (IFN-I) responses for host defense against pathogens. Although T cells highly express STING, its physiological role remains unknown. Here, we show that costimulation of T cells with the STING ligand cGAMP and TCR leads to IFN-I production and strongly inhibits T-cell growth. TCR-mediated mTORC1 activation and sustained activation of IRF3 are required for cGAMP-induced IFN-I production, and the mTORC1 activity is partially counteracted by cGAMP, thereby blocking proliferation. This mTORC1 inhibition in response to costimulation depends on IRF3 and IRF7. Effector T cells produce much higher IFN-I levels than innate cells in response to cGAMP. Finally, we demonstrated that STING stimulation in T cells is effective in inducing antitumor responses in vivo. Our studies demonstrate that the outputs of STING and TCR signaling pathways are mutually regulated through mTORC1 to modulate T-cell functions.

Details

ISSN :
25751077
Volume :
2
Database :
OpenAIRE
Journal :
Life Science Alliance
Accession number :
edsair.doi.dedup.....a67223c17183483a2beda8a5f88f35fd