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成熟 B 细胞中 BCR 依赖性谱系可塑性。

BCR-dependent lineage plasticity in mature B cells.

机构信息

Immune Regulation and Cancer, Max Delbrück Center for Molecular Medicine in the Helmholtz Association, 13125 Berlin, Germany.

Program in Cellular and Molecular Medicine, Children's Hospital, and Immune Disease Institute, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Science. 2019 Feb 15;363(6428):748-753. doi: 10.1126/science.aau8475.

Abstract

B2 cells engage in classical antibody responses, whereas B1 cells are considered carriers of innate immunity, biased toward recognizing epitopes present on the surfaces of common pathogens and self antigens. To explore the role of B cell antigen receptor (BCR) specificity in driving B1 cell differentiation, we developed a transgenic system allowing us to change BCR specificity in B cells in an inducible and programmed manner. Mature B2 cells differentiated into bona fide B1 cells upon acquisition of a B1 cell-typical self-reactive BCR through a phase of proliferative expansion. Thus, B2 cells have B1 cell differentiation potential in addition to their classical capacity to differentiate into memory and plasma cells, and B1 differentiation can be instructed by BCR-mediated self-reactivity, in the absence of B1-lineage precommitment.

摘要

B 细胞参与经典的抗体反应,而 B1 细胞被认为是先天免疫的载体,偏向于识别常见病原体和自身抗原表面存在的表位。为了探讨 B 细胞抗原受体 (BCR) 特异性在驱动 B1 细胞分化中的作用,我们开发了一种转基因系统,允许我们以诱导和程序化的方式改变 B 细胞中的 BCR 特异性。成熟的 B2 细胞在获得 B1 细胞典型的自身反应性 BCR 后,通过增殖扩张阶段分化为真正的 B1 细胞。因此,B2 细胞除了具有经典的分化为记忆细胞和浆细胞的能力外,还具有 B1 细胞分化的潜力,并且 B1 分化可以通过 BCR 介导的自身反应来指导,而无需 B1 谱系预先承诺。

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