Wensveen Felix M, Slinger Erik, van Attekum Martijn Ha, Brink Robert, Eldering Eric
Department of Experimental Immunology, Academic Medical Center, 1105AZ, Amsterdam, The Netherlands.
Immunology Division, Garvan Institute of Medical Research, NSW 2010, Darlinghurst, Australia.
Sci Rep. 2016 Oct 20;6:35673. doi: 10.1038/srep35673.
Upon antigen encounter, the responsive B cell pool undergoes stringent selection which eliminates cells with low B cell receptor (BCR) affinity. Already before formation of the germinal center, activated B cells of low-affinity are negatively selected in a process that is molecularly not well understood. In this study, we investigated the mechanism behind pre-GC affinity-mediated B cell selection. We applied affinity mutants of HEL antigen and found that rapidly after activation B cells become highly dependent on the cytokine BAFF. Moreover, expression of BAFF receptor CD268 is regulated in a BCR-affinity dependent fashion. High affinity responses via BAFF correlated with PI3K activation, which controlled expression of the pro-survival protein Mcl-1, and thereby increased survival. In the presence of excess BAFF, or in absence of the Mcl-1 antagonist Noxa, more low-affinity B cells survived the first two days after antigen encounter. This resulted in increased numbers of antigen-specific B cells of low affinity upon immunization and reduced the overall affinity of cells that contributed to the germinal center reaction. Our findings elucidate a crucial molecular pathway of B cell selection in the earliest phases of activation by identifying a novel link between BCR affinity and BAFF-R signaling towards Mcl-1.
遇到抗原时,反应性B细胞库会经历严格的选择,淘汰那些B细胞受体(BCR)亲和力低的细胞。早在生发中心形成之前,低亲和力的活化B细胞就在一个分子机制尚不清楚的过程中被阴性选择。在本研究中,我们调查了生发中心前亲和力介导的B细胞选择背后的机制。我们应用了HEL抗原的亲和力突变体,发现活化后B细胞迅速变得高度依赖细胞因子BAFF。此外,BAFF受体CD268的表达以BCR亲和力依赖的方式受到调节。通过BAFF的高亲和力反应与PI3K激活相关,PI3K激活控制促生存蛋白Mcl-1的表达,从而提高生存率。在存在过量BAFF的情况下,或在没有Mcl-1拮抗剂Noxa的情况下,更多低亲和力B细胞在遇到抗原后的前两天存活下来。这导致免疫后低亲和力抗原特异性B细胞数量增加,并降低了参与生发中心反应的细胞的总体亲和力。我们的研究结果通过确定BCR亲和力与BAFF-R向Mcl-1信号传导之间的新联系,阐明了激活最早阶段B细胞选择的关键分子途径。