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High recallability of memory B cells requires ZFP318-dependent transcriptional regulation of mitochondrial function

GSE261382 Mus musculus Expression profiling by high throughput sequencing 8 samples Submitted 2024/06/04 Platform GPL24247
Summary
Expression of the transcriptional regulator ZFP318 is induced in germinal center (GC)-exiting memory B cell precursors and memory B cells (MBCs). Using a conditional ZFP318 fluorescence reporter that also enables ablation of ZFP318-expressing cells, we found that ZFP318-expressing MBCs were highly enriched with GC-derived cells. Although ZFP318-expressing MBCs constituted only a minority of the antigen-specific MBC compartment, their ablation severely impaired recall responses. Deletion of the Zfp318 gene did not alter the magnitude of primary responses but markedly reduced MBC participation in recall. CD40 ligation promoted Zfp318 expression whereas BCR signaling was inhibitory. Enforced ZFP318 expression enhanced recall performance of MBCs that otherwise responded poorly. ZFP318-deficient MBCs expressed less mitochondrial genes, had structurally compromised mitochondria and were susceptible to reactivation-induced cell death. The abundance of ZFP318-expressing MBCs, instead of the number of antigen-specific MBCs, correlated with the potency of prime-boost vaccination. Therefore, ZFP318 controls the MBC recallability and represents a key checkpoint of humoral immune memory.
Published in
High recallability of memory B cells requires ZFP318-dependent transcriptional regulation of mitochondrial function
Wang Y, Shao W, Liu X et al. · Immunity 2024 · PMID 38889716 · doi:10.1016/j.immuni.2024.05.022
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Also filed as BioProject PRJNA1086812 and SRA study SRP494715. Searching any of these in the dataset finder brings you back here.

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