| Literature DB >> 33613551 |
Elena Merino Tejero1, Danial Lashgari1, Rodrigo García-Valiente1, Xuefeng Gao2, Fabien Crauste3, Philippe A Robert4, Michael Meyer-Hermann4,5, María Rodríguez Martínez6, S Marieke van Ham7,8, Jeroen E J Guikema9, Huub Hoefsloot10, Antoine H C van Kampen1,10.
Abstract
Germinal centers play a key role in the adaptive immune system since they are able to produce memory B cells and plasma cells that produce high affinity antibodies for an effective immune protection. The mechanisms underlying cell-fate decisions are not well understood but asymmetric division of antigen, B-cell receptor affinity, interactions between B-cells and T follicular helper cells (triggering CD40 signaling), and regulatory interactions of transcription factors have all been proposed to play a role. In addition, a temporal switch from memory B-cell to plasma cell differentiation during the germinal center reaction has been shown. To investigate if antigen affinity-based Tfh cell help recapitulates the temporal switch we implemented a multiscale model that integrates cellular interactions with a core gene regulatory network comprising BCL6, IRF4, and BLIMP1. Using this model we show that affinity-based CD40 signaling in combination with asymmetric division of B-cells result in switch from memory B-cell to plasma cell generation during the course of the germinal center reaction. We also show that cell fate division is unlikely to be (solely) based on asymmetric division of Ag but that BLIMP1 is a more important factor. Altogether, our model enables to test the influence of molecular modulations of the CD40 signaling pathway on the production of germinal center output cells.Entities:
Keywords: CD40 signaling; T follicular helper cell; germinal center; multiscale model; plasma cell differentiation
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Year: 2021 PMID: 33613551 PMCID: PMC7892951 DOI: 10.3389/fimmu.2020.620716
Source DB: PubMed Journal: Front Immunol ISSN: 1664-3224 Impact factor: 7.561