Bioinformatics Laboratory, Epidemiology and Data Science, Amsterdam Public Health Research Institute, Amsterdam Institute for Infection and Immunity, Amsterdam, Netherlands.
Department of Hematology and Oncology, International Cancer Center, Shenzhen University General Hospital, Shenzhen University Health Science Center, Shenzhen, China.
Front Immunol. 2021 Feb 5;11:620716. doi: 10.3389/fimmu.2020.620716. eCollection 2020.
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.
生发中心在适应性免疫系统中起着关键作用,因为它们能够产生记忆 B 细胞和浆细胞,这些细胞能够产生高亲和力的抗体,从而提供有效的免疫保护。细胞命运决定的机制尚不清楚,但抗原的不对称分裂、B 细胞受体亲和力、B 细胞与滤泡辅助性 T 细胞(触发 CD40 信号)之间的相互作用,以及转录因子的调节相互作用都被认为发挥了作用。此外,生发中心反应过程中已经显示出从记忆 B 细胞到浆细胞分化的时间转换。为了研究抗原亲和力依赖的滤泡辅助性 T 细胞(Tfh)辅助是否再现了这种时间转换,我们实施了一个多尺度模型,该模型将细胞相互作用与包含 BCL6、IRF4 和 BLIMP1 的核心基因调控网络集成在一起。使用该模型,我们表明,抗原亲和力依赖的 CD40 信号与 B 细胞的不对称分裂相结合,导致生发中心反应过程中从记忆 B 细胞向浆细胞生成的转换。我们还表明,细胞命运的分裂不太可能(仅仅)基于抗原的不对称分裂,而 BLIMP1 是一个更重要的因素。总之,我们的模型能够测试 CD40 信号通路的分子调节对生发中心输出细胞产生的影响。