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BAFF、IL-4 和 IL-21 可分别对体外 CD40L 激活的 B 细胞中生发中心样表型的获得、BCL6 表达、增殖和存活进行编程。

BAFF, IL-4 and IL-21 separably program germinal center-like phenotype acquisition, BCL6 expression, proliferation and survival of CD40L-activated B cells in vitro.

机构信息

Department of Immunology & Pathology, Alfred Research Alliance, Monash University, Melbourne, VIC, 3004, Australia.

Department of Biology, University of Erlangen, Staudtstr. 5, 91058, Erlangen, Germany.

出版信息

Immunol Cell Biol. 2019 Oct;97(9):826-839. doi: 10.1111/imcb.12283. Epub 2019 Jul 29.

Abstract

A B cell culture system using BAFF, IL-4 and IL-21 was recently developed that generates B cells with phenotypic and functional characteristics of in vivo-generated germinal center (GC) B cells. Here, we observe discrete influences of each exogenous signal on the expansion and differentiation of a CD40L-activated B cell pool. IL-4 was expressly necessary, but neither BAFF nor IL-21 was required for B cell acquisition of the GC B cell phenotypes of peanut agglutinin binding and loss of CD38 and IgD expression. Both IL-4 and IL-21 enhanced cell cycle entry upon initial activation dose-dependently, and did so additively. Importantly, while both cytokines acted in concert to increase overall BCL6 expression amounts, IL-21 exposure uniquely caused a small proportion of cells to attain a higher level of BCL6 expression, reminiscent of in vivo GC B cells. In contrast, BAFF supported survival of a fraction of memory-like B cells in extended cultures after removal of surrogate T cell-help signals. Thus, by separably programming proliferation, survival and GC phenotype acquisition, IL-4, BAFF and IL-21 drive distinct components of activated B cell fate.

摘要

最近开发了一种使用 BAFF、IL-4 和 IL-21 的 B 细胞培养系统,该系统产生的 B 细胞具有体内生成的生发中心 (GC) B 细胞的表型和功能特征。在这里,我们观察到每个外源性信号对 CD40L 激活的 B 细胞池的扩增和分化的离散影响。IL-4 是明确必需的,但 BAFF 和 IL-21 都不是 B 细胞获得花生凝集素结合和丧失 CD38 和 IgD 表达的 GC B 细胞表型所必需的。IL-4 和 IL-21 都在初始激活剂量依赖性地上调细胞周期进入,并且具有加性作用。重要的是,虽然这两种细胞因子协同作用增加了 BCL6 表达总量,但 IL-21 暴露仅导致一小部分细胞获得更高水平的 BCL6 表达,类似于体内 GC B 细胞。相比之下,BAFF 支持在去除替代 T 细胞辅助信号后延长培养物中记忆样 B 细胞的存活。因此,通过可分离地编程增殖、存活和 GC 表型获得,IL-4、BAFF 和 IL-21 驱动激活的 B 细胞命运的不同成分。

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