Henn Alicia D, Rebhahn Jonathan, Brown Miguel A, Murphy Alison J, Coca Mircea N, Hyrien Ollivier, Pellegrin Tina, Mosmann Tim, Zand Martin S
Division of Nephrology, University of Rochester Medical Center, Rochester, NY 14642, USA.
J Immunol. 2009 Sep 1;183(5):3177-87. doi: 10.4049/jimmunol.0804233. Epub 2009 Aug 12.
During the recall response by CD27(+) IgG class-switched human memory B cells, total IgG secreted is a function of the following: 1) the number of IgG-secreting cells (IgG-SC), and 2) the secretion rate of each cell. In this study, we report the quantitative ELISPOT method for simultaneous estimation of single-cell IgG secretion rates and secreting cell frequencies in human B cell populations. We found that CD27(+) IgM(-) memory B cells activated with CpG and cytokines had considerable heterogeneity in the IgG secretion rates, with two major secretion rate subpopulations. BCR cross-linking reduced the frequency of cells with high per-cell IgG secretion rates, with a parallel decrease in CD27(high) B cell blasts. Increased cell death may account for the BCR-stimulated reduction in high-rate IgG-SC CD27(high) B cell blasts. In contrast, the addition of IL-21 to CD40L plus IL-4-activated human memory B cells induced a high-rate IgG-SC population in B cells with otherwise low per-cell IgG secretion rates. The profiles of human B cell IgG secretion rates followed the same biphasic distribution and range irrespective of division class. This, along with the presence of non-IgG-producing, dividing B cells in CpG plus cytokine-activated B memory B cell populations, is suggestive of an on/off switch regulating IgG secretion. Finally, these data support a mixture model of IgG secretion in which IgG secreted over time is modulated by the frequency of IgG-SC and the distribution of their IgG secretion rates.
在CD27(+) IgG类别转换的人类记忆B细胞的回忆反应过程中,分泌的总IgG取决于以下因素:1)分泌IgG的细胞(IgG-SC)数量,以及2)每个细胞的分泌速率。在本研究中,我们报告了一种定量ELISPOT方法,用于同时估计人类B细胞群体中单细胞IgG分泌速率和分泌细胞频率。我们发现,用CpG和细胞因子激活的CD27(+) IgM(-)记忆B细胞在IgG分泌速率上具有相当大的异质性,存在两个主要的分泌速率亚群。BCR交联降低了每细胞IgG分泌速率高的细胞频率,同时CD27(高) B细胞母细胞数量也相应减少。细胞死亡增加可能是BCR刺激导致高分泌速率IgG-SC CD27(高) B细胞母细胞减少的原因。相比之下,在CD40L加IL-4激活的人类记忆B细胞中添加IL-21会在原本每细胞IgG分泌速率较低的B细胞中诱导出一个高分泌速率IgG-SC群体。无论分化类别如何,人类B细胞IgG分泌速率的分布都呈现相同的双相分布和范围。这一点,连同在CpG加细胞因子激活的B记忆B细胞群体中存在不分泌IgG的增殖B细胞,提示存在一个调节IgG分泌的开关机制。最后,这些数据支持了IgG分泌的混合模型,即随着时间推移分泌的IgG受到IgG-SC频率及其IgG分泌速率分布的调节。