4.8 Article

Self-Restrained B Cells Arise following Membrane IgE Expression

Journal

CELL REPORTS
Volume 10, Issue 6, Pages 900-909

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2015.01.023

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Funding

  1. Ligue Nationale Contre le Cancer, Association pour la Recherche sur le Cancer [SL220100601332]
  2. Institut Universitaire de France
  3. Conseil Regional du Limousin
  4. CNRS
  5. Region Limousin
  6. Association pour la Recherche sur le Cancer

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Among immunoglobulins (Igs), IgE can powerfully contribute to antimicrobial immunity and severe allergy despite its low abundance. IgE protein and gene structure resemble other Ig classes, making it unclear what constrains its production to thousandfold lower levels. Whether class-switched B cell receptors (BCRs) differentially control B cell fate is debated, and study of the membrane (m) IgE class is hampered by its elusive in vivo expression. Here, we demonstrate a self-controlled mIgE(+) B cell stage. Primary or transfected mIgE(+) cells relocate the BCRs into spontaneously internalized lipid rafts, lose mobility to chemokines, and change morphology. We suggest that combined proapoptotic mechanisms possibly involving Hax1 prevent mIgE(+) memory lymphocyte accumulation. By uncoupling in vivo IgE switching from cytokine and antigen stimuli, we show that these features are independent from B cell stimulation and instead result from mIgE expression per se. Consequently, few cells survive IgE class switching, which might ensureminimal long-term IgE memory upon differentiation into plasma cells.

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