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T cell cholesterol transport links intestinal immune responses to dietary lipid absorption

GSE277067 Mus musculus Expression profiling by high throughput sequencing 7 samples Submitted 2025/07/20 Platform GPL21103
Summary
The intrinsic pathways that control membrane organization in immune cells and the impact of such pathways on cellular functions are not well defined. Here we show that the nonvesicular cholesterol transporter Aster-A links plasma membrane (PM) cholesterol availability in T cells to immune signaling and systemic metabolism. Aster-A is recruited to the PM during T-cell receptor (TCR) activation, where it facilitates the removal of newly generated “accessible” cholesterol. Loss of Aster-A leads to excess PM cholesterol accumulation, resulting in enhanced TCR nano-clustering and signaling, and in Th17 cytokine production. Furthermore, Aster-A associates with STIM1 and negatively regulates STIM1-dependent calcium flux during activation of mouse and human T cells. Finally, mucosal Th17 response towards commensals is restrained by PM cholesterol remodeling. Ablation of Aster-A in T cells stimulates IL-22 production, which reduces intestinal fatty acid absorption, and confers resistance to diet-induced obesity. These findings delineate a multi-tiered regulatory scheme linking immune cell lipid flux to nutrient absorption and systemic physiology.
Published in
T cell cholesterol transport links intestinal immune responses to dietary lipid absorption
Gao Y, Kennelly JP, Xiao X et al. · Science (New York, N.Y.) 2025 · PMID 41066556 · doi:10.1126/science.adt4169
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Also filed as BioProject PRJNA1160313 and SRA study SRP532374. Searching any of these in the dataset finder brings you back here.

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