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March 3, 2026The Journal of Experimental Medicine5 citationsOpen Access

In vivo CRISPR/Cas9 screens identify new regulators of B cell activation and plasma cell differentiation

LCLesly CalderónMSMarkus SchäferMRMarina Rončević

Key Points

  • B cell activation and differentiation are regulated by newly identified genes in plasma cells.
  • A total of 379 sgRNAs were analyzed, finding 23 positive and 18 negative regulators during the process.
  • Adoptive transfer techniques were employed using Cd23-Cre Rosa26LSL-EcoR/+ mice for this in vivo study.
  • Identified gene hits show potential therapeutic targets for enhancing immune responses against pathogens.

Abstract

Immune responses to pathogens lead to the generation of plasma cells through a complex interplay of B cells with their microenvironment in lymphoid organs. To identify new regulators of B cell activation and plasmablast differentiation in the context of the splenic microenvironment, we established an in vivo system for pooled sgRNA CRISPR/Cas9 screens in immunized mice. To improve the infection efficiency of naïve B cells, we generated Cd23-Cre Rosa26LSL-EcoR/+ mice exhibiting increased expression of the ecotropic lentivirus receptor EcoR on naïve B cells. Upon adoptive B cell transfer and immunization of recipient mice, 379 sgRNAs, targeting genes with high expression in plasma cells, were analyzed for their effects on plasmablast generation. Gene hits, encoding 23 positive and 18 negative regulators of B cell activation, plasmablast differentiation, or homeostasis, were uniquely identified in these in vivo screens. Validated genes encoded proteins involved in cell adhesion, signal transduction, protein folding, iron transport, and enzymatic processes. Hence, our in vivo screening system identified novel regulators controlling B cell-mediated immune responses.

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Cite This Study

Calderón et al. (2026) studied this question.

synapsesocial.com/papers/69a75babc6e9836116a23727https://doi.org/10.1084/jem.20250594
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