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CD22 控制生发中心 B 细胞受体信号转导,进而影响浆细胞和记忆 B 细胞的输出。

CD22 Controls Germinal Center B Cell Receptor Signaling, Which Influences Plasma Cell and Memory B Cell Output.

机构信息

Division of Genetics, Department of Biology, University of Erlangen, Erlangen, Germany.

Division of Genetics, Department of Biology, University of Erlangen, Erlangen, Germany

出版信息

J Immunol. 2021 Aug 15;207(4):1018-1032. doi: 10.4049/jimmunol.2100132. Epub 2021 Jul 30.

Abstract

Germinal center reactions are established during a thymus-dependent immune response. Germinal center (GC) B cells are rapidly proliferating and undergo somatic hypermutation in Ab genes. This results in the production of high-affinity Abs and establishment of long-lived memory cells. GC B cells show lower BCR-induced signaling when compared with naive B cells, but the functional relevance is not clear. CD22 is a member of the Siglec family and functions as an inhibitory coreceptor on B cells. Interestingly, GC B cells downregulate sialic acid forms that serve as high-affinity ligands for CD22, indicating a role for CD22 ligand binding during GC responses. We studied the role of CD22 in the GC with mixed bone marrow chimeric mice and found a disadvantage of CD22 GC B cells during the GC reaction. Mechanistic investigations ruled out defects in dark zone/light zone distribution and affinity maturation. Rather, an increased rate of apoptosis in CD22 GC B cells was responsible for the disadvantage, also leading to a lower GC output in plasma cells and memory B cells. CD22 GC B cells showed a clearly increased calcium response upon BCR stimulation, which was almost absent in wild-type GC B cells. We conclude that the differential expression of the low-affinity CD22 ligands in the GC normally results in a strong attenuation of BCR signaling in GC B cells, probably due to higher CD22-BCR interactions. Therefore, attenuation of BCR signaling by CD22 is involved in GC output and B cell fate.

摘要

生发中心反应是在依赖于胸腺的免疫应答过程中建立的。生发中心(GC)B 细胞迅速增殖,并在 Ab 基因中发生体细胞超突变。这导致了高亲和力 Ab 的产生和长寿命记忆细胞的建立。与幼稚 B 细胞相比,GC B 细胞显示出较低的 BCR 诱导信号,但功能相关性尚不清楚。CD22 是 Siglec 家族的成员,作为 B 细胞上的抑制性共受体发挥作用。有趣的是,GC B 细胞下调了作为 CD22 高亲和力配体的唾液酸形式,表明 CD22 配体结合在 GC 反应中起作用。我们使用混合骨髓嵌合小鼠研究了 CD22 在 GC 中的作用,发现 CD22 GC B 细胞在 GC 反应中处于劣势。机制研究排除了暗区/亮区分布和亲和力成熟缺陷。相反,CD22 GC B 细胞的凋亡率增加是导致这种劣势的原因,这也导致浆细胞和记忆 B 细胞中的 GC 输出降低。CD22 GC B 细胞在 BCR 刺激下显示出明显增加的钙反应,而野生型 GC B 细胞中几乎不存在这种反应。我们得出结论,GC 中低亲和力 CD22 配体的差异表达通常导致 GC B 细胞中 BCR 信号的强烈衰减,可能是由于 CD22-BCR 相互作用增加所致。因此,CD22 对 BCR 信号的衰减参与了 GC 输出和 B 细胞命运。

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