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Westerberg, L.

Publications and source records attributed to Westerberg, L..

2 recordsLinked to original sources

AID facilitates TET2 demethylation of Irf4 for plasma cell fate in germinal center B cells

Activation-induced cytidine deaminase (AID) is essential for B cell affinity maturation. We investigated why AID deficiency gives rise to giant germinal centers (GC) using the AIDR112H mouse model that is devoid of AID activity. The increased GC response was associated with accumulation of GC B cells in the light zone in immunized AIDR112H mice. AIDR112H GC B cells had reduced capacity to up-regulate IRF4 to initiate plasma cell differentiation, leading to accumulation of a transitional GC population with reduced GL7 expression. Genetic introduction of a high affinity B cell receptor (BCR) was unable to restore plasma cell differentiation of AIDR112H B cells while ectopic expression of catalytic active AID rescued plasma cell generation. AIDR112H impaired recruitment of AID to the Irf4 promoter/enhancer and disrupted the interaction with Ten-eleven Translocation 2 (TET2). Consequently, DNA demethylation at the Irf4 promoter/enhancer was reduced in AIDR112H GC B cells and impeded high Irf4 expression for transition into plasma cells. This data reveals a B cell-intrinsic mechanism that governs the plasma cell fate decision through epigenetic remodeling mediated by AID in cooperation with TET2. Key messagesO_LIAID deficiency leads to accumulation of a transitional (t)GC population of B cells with low expression of GL7 and failure to up-regulate IRF4 C_LIO_LIAID deamination activity is needed to promote up-regulation of IRF4 for plasma cell differentiation. C_LIO_LICo-operation between TET2 and AID facilitates demethylation of the Irf4 enhancer/promoter. C_LI

immunology↗

FOXO dictates initiation of B cell development and myeloid restriction in common lymphoid progenitors

The development of B cells relies on an intricate network of transcription factors critical for developmental progression and lineage commitment. In the B cell developmental trajectory, a temporal switch from predominant Foxo3 to Foxo1 expression occurs at the CLP stage. Utilizing VAV-iCre mediated conditional deletion, we found that the loss of FOXO3 impaired B cell development from LMPP down to B cell precursors, while the loss of FOXO1 impaired B cell commitment and resulted in a complete developmental block at the CD25 negative proB cell stage. Strikingly, the combined loss of FOXO1 and FOXO3 resulted in the failure to restrict the myeloid potential of CLPs and the complete loss of the B cell lineage. This is underpinned by the failure to enforce the early B-lineage gene regulatory circuitry upon a predominantly pre-established open chromatin landscape. Altogether, this demonstrates that FOXO3 and FOXO1 cooperatively govern early lineage restriction and initiation of B-lineage commitment in CLPs. SUMMARYCommon lymphoid progenitors co-express the transcription factors FOXO1 and FOXO3. Removing FOXO1 and FOXO3 at this developmental stage results in regained myeloid potential, failed establishment of the early B cell gene regulatory program, and the complete loss of the B cell lineage.

immunology↗