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A Lactate-induced SREBF2-dependent genetic program drives an immunotolerant dendritic cell population during cancer progression [scRNAseq_mouse]

GSE253592 Mus musculus Expression profiling by high throughput sequencing 5 samples Submitted 2024/05/13 Platform GPL19057
Summary
Dendritic cells (cDCs) are essential mediators of anti-tumor immunity. Cancers have developed mechanisms to render DCs dysfunctional within the tumor microenvironment. Utilizing CD63 as a unique surface marker, we demonstrate that mature regulatory DCs (mregDCs) suppress DC antigen cross-presentation while driving TH2 and regulatory T cell differentiation within tumor-draining lymph node tissues. Transcriptional and metabolic studies show that mregDC functionality is dependent upon the mevalonate biosynthetic pathway and the master transcription factor, SREBP2. Melanoma-derived lactate activates DC SREBP2 in the tumor microenvironment (TME) and drives mregDC development from conventional DCs. DC-specific genetic silencing and pharmacologic inhibition of SREBP2 promotes anti-tumor CD8+ T cell activation and suppresses melanoma progression. CD63+ mregDCs reside within the sentinel lymph nodes of melanoma patients. Collectively, this work describes a tumor-driven SREBP2-dependent program that promotes CD63+ mregDC development and function while serving as a promising therapeutic target for overcoming immune tolerance in the TME.
Published in
A lactate-SREBP2 signaling axis drives tolerogenic dendritic cell maturation and promotes cancer progression
Plebanek MP, Xue Y, Nguyen YV et al. · Science immunology 2024 · PMID 38728412 · doi:10.1126/sciimmunol.adi4191
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Also filed as BioProject PRJNA1066327 and SRA study SRP484632. Searching any of these in the dataset finder brings you back here.

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