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Metabolic control of regulatory T cell stability and function by TRAF3IP3 at the lysosome.


ABSTRACT: Metabolic programs are crucial for regulatory T (T reg) cell stability and function, but the underlying mechanisms that regulate T reg cell metabolism are elusive. Here, we report that lysosomal TRAF3IP3 acts as a pivotal regulator in the maintenance of T reg cell metabolic fitness. T reg-specific deletion of Traf3ip3 impairs T reg cell function, causing the development of inflammatory disorders and stronger antitumor T cell responses in mice. Excessive mechanistic target of rapamycin complex 1 (mTORC1)-mediated hyper-glycolytic metabolism is responsible for the instability of TRAF3IP3-deficient T reg cells. Mechanistically, TRAF3IP3 restricts mTORC1 signaling by recruiting the serine-threonine phosphatase catalytic subunit (PP2Ac) to the lysosome, thereby facilitating the interaction of PP2Ac with the mTORC1 component Raptor. Our results define TRAF3IP3 as a metabolic regulator in T reg cell stability and function and suggest a lysosome-specific mTORC1 signaling mechanism that regulates T reg cell metabolism.

SUBMITTER: Yu X 

PROVIDER: S-EPMC6122976 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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Metabolic control of regulatory T cell stability and function by TRAF3IP3 at the lysosome.

Yu Xiaoyan X   Teng Xiao-Lu XL   Wang Feixiang F   Zheng Yuhan Y   Qu Guojun G   Zhou Yan Y   Hu Zhilin Z   Wu Zhongqiu Z   Chang Yuzhou Y   Chang Yuzhou Y   Chen Lei L   Li Hua-Bing HB   Su Bing B   Lu Liming L   Liu Zhiduo Z   Sun Shao-Cong SC   Zou Qiang Q  

The Journal of experimental medicine 20180816 9


Metabolic programs are crucial for regulatory T (T reg) cell stability and function, but the underlying mechanisms that regulate T reg cell metabolism are elusive. Here, we report that lysosomal TRAF3IP3 acts as a pivotal regulator in the maintenance of T reg cell metabolic fitness. T reg-specific deletion of <i>Traf3ip3</i> impairs T reg cell function, causing the development of inflammatory disorders and stronger antitumor T cell responses in mice. Excessive mechanistic target of rapamycin com  ...[more]

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