Neurotrophic factor Neuritin modulates T cell electrical and metabolic state for the balance of tolerance and immunity

神经营养因子神经素调节T细胞的电生理和代谢状态,从而维持免疫耐受和免疫力的平衡。

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作者:Hong Yu # ,Hiroshi Nishio # ,Joseph Barbi # ,Marisa Mitchell-Flack ,Paolo D A Vignali ,Ying Zheng ,Andriana Lebid ,Kwang-Yu Chang ,Juan Fu ,Makenzie Higgins ,Ching-Tai Huang ,Xuehong Zhang ,Zhiguang Li ,Lee Blosser ,Ada Tam ,Charles Drake ,Drew Pardoll

Abstract

The adaptive T cell response is accompanied by continuous rewiring of the T cell's electric and metabolic state. Ion channels and nutrient transporters integrate bioelectric and biochemical signals from the environment, setting cellular electric and metabolic states. Divergent electric and metabolic states contribute to T cell immunity or tolerance. Here, we report in mice that neuritin (Nrn1) contributes to tolerance development by modulating regulatory and effector T cell function. Nrn1 expression in regulatory T cells promotes its expansion and suppression function, while expression in the T effector cell dampens its inflammatory response. Nrn1 deficiency in mice causes dysregulation of ion channel and nutrient transporter expression in Treg and effector T cells, resulting in divergent metabolic outcomes and impacting autoimmune disease progression and recovery. These findings identify a novel immune function of the neurotrophic factor Nrn1 in regulating the T cell metabolic state in a cell context-dependent manner and modulating the outcome of an immune response.

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