In vivo CRISPR screening reveals nutrient signaling processes underpinning CD8+ T cell fate decisions

体内 CRISPR 筛选揭示了 CD8+ T 细胞命运决定背后的营养信号传导过程

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作者:Hongling Huang ,Peipei Zhou ,Jun Wei ,Lingyun Long ,Hao Shi ,Yogesh Dhungana ,Nicole M Chapman ,Guotong Fu ,Jordy Saravia ,Jana L Raynor ,Shaofeng Liu ,Gustavo Palacios ,Yong-Dong Wang ,Chenxi Qian ,Jiyang Yu ,Hongbo Chi

Abstract

How early events in effector T cell (TEFF) subsets tune memory T cell (TMEM) responses remains incompletely understood. Here, we systematically investigated metabolic factors in fate determination of TEFF and TMEM cells using in vivo pooled CRISPR screening, focusing on negative regulators of TMEM responses. We found that amino acid transporters Slc7a1 and Slc38a2 dampened the magnitude of TMEM differentiation, in part through modulating mTORC1 signaling. By integrating genetic and systems approaches, we identified cellular and metabolic heterogeneity among TEFF cells, with terminal effector differentiation associated with establishment of metabolic quiescence and exit from the cell cycle. Importantly, Pofut1 (protein-O-fucosyltransferase-1) linked GDP-fucose availability to downstream Notch-Rbpj signaling, and perturbation of this nutrient signaling axis blocked terminal effector differentiation but drove context-dependent TEFF proliferation and TMEM development. Our study establishes that nutrient uptake and signaling are key determinants of T cell fate and shape the quantity and quality of TMEM responses.

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