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Itaconate transporter SLC13A3 impairs tumor immunity via endowing ferroptosis resistance [RNA-Seq]

GSE268293 Mus musculus Expression profiling by high throughput sequencing 8 samples Submitted 2024/09/19 Platform GPL19057
Summary
Immune checkpoint blockade (ICB) triggers tumor ferroptosis. However, most patients are unresponsive to ICB. Tumors might evade ferroptosis in the tumor microenvironment (TME). Here, we discovered SLC13A3 is an itaconate transporter in tumor cells and endows tumor ferroptosis resistance, diminishing tumor immunity and ICB efficacy. Mechanistically, tumor cells uptake itaconate via SLC13A3 from tumor-associated macrophages (TAMs), thereby activating the NRF2-SLC7A11 pathway and escaping from immune-mediated ferroptosis. Structural modeling and molecular docking analysis identified a functional inhibitor for SLC13A3 (SLC13A3i). Deletion of ACOD1 (an essential enzyme for itaconate synthesis) in macrophages, genetic ablation of SLC13A3 in tumors, or treatment with SLC13A3i sensitized tumors to ferroptosis, curbed tumor progression, and bolstered ICB effectiveness. Thus, we identify the interplay between tumors and TAMs via the SLC13A3-itaconate-NRF2-SLC7A11 axis as a previously unknown immune ferroptosis resistant mechanism in the TME and SLC13A3 as a promising immunometabolic target and disease indication for treating SLC13A3+cancer.
Published in
Itaconate transporter SLC13A3 impairs tumor immunity via endowing ferroptosis resistance
Lin H, Tison K, Du Y et al. · Cancer cell 2024 · PMID 39515327 · doi:10.1016/j.ccell.2024.10.010
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Also filed as BioProject PRJNA1116127 and SRA study SRP509766. Searching any of these in the dataset finder brings you back here.

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