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Slc44a2 deficiency unveils an IFN-I–dependent feedback control of pDC egress II

GSE326463 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2026/07/15 Platform GPL23479
Summary
Plasmacytoid dendritic cells (pDCs) are a specialized subset of innate immune cells capable of sensing viral nucleic acids and rapidly producing large amounts of type I interferons (IFN-I). However, excessive IFN-I production can cause various immunopathogenic conditions. The capacity for IFN-I production by pDCs is tightly regulated, yet the underlying mechanisms remain incompletely understood. Here, we describe two levels of negative regulatory mechanisms controlling IFN-I production by pDCs. First, we identified SLC44A2 as a negative regulator of IFN-I production. SLC44A2 was highly expressed in resting pDCs but significantly downregulated upon activation. Deficiency of SLC44A2 led to excessive IFN-I production. Mechanistically, SLC44A2 may restrict IFN-I production by exporting threonine, asparagine, and glutamine, amino acids that we found to be essential for IFN-I production in pDCs. Second, we uncovered an IFN-I-dependent negative feedback mechanism controlling pDC egress. Excessive IFN-I restrained pDC migration by downregulating CCR2 and CCR5. This feedback was generally observed during viral infections, autoimmune diseases, and in Slc44a2-deficient mice. Taken together, these two regulatory mechanisms are essential for maintaining pDC homeostasis and preventing systemic overactivation of IFN-I responses.
Published in
Slc44a2 Deficiency Unveils an IFN-I-Dependent Feedback Control of pDC Egress
Chen R, Wu T, Shi Z et al. · Advanced science (Weinheim, Baden-Wurttemberg, Germany) 2026 · PMID 42360155 · doi:10.1002/advs.76325
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Also filed as BioProject PRJNA1445318 and SRA study SRP687820. Searching any of these in the dataset finder brings you back here.

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