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肠道生发中心 B 细胞选择的可调动力学。

Tunable dynamics of B cell selection in gut germinal centres.

机构信息

Laboratory of Lymphocyte Dynamics, The Rockefeller University, New York, NY, USA.

Laboratory of Mucosal Immunology, The Rockefeller University, New York, NY, USA.

出版信息

Nature. 2020 Dec;588(7837):321-326. doi: 10.1038/s41586-020-2865-9. Epub 2020 Oct 28.

Abstract

Germinal centres, the structures in which B cells evolve to produce antibodies with high affinity for various antigens, usually form transiently in lymphoid organs in response to infection or immunization. In lymphoid organs associated with the gut, however, germinal centres are chronically present. These gut-associated germinal centres can support targeted antibody responses to gut infections and immunization. But whether B cell selection and antibody affinity maturation take place in the face of the chronic and diverse antigenic stimulation characteristic of these structures under steady state is less clear. Here, by combining multicolour 'Brainbow' cell-fate mapping and sequencing of immunoglobulin genes from single cells, we find that 5-10% of gut-associated germinal centres from specific-pathogen-free (SPF) mice contain highly dominant 'winner' B cell clones at steady state, despite rapid turnover of germinal-centre B cells. Monoclonal antibodies derived from these clones show increased binding, compared with their unmutated precursors, to commensal bacteria, consistent with antigen-driven selection. The frequency of highly selected gut-associated germinal centres is markedly higher in germ-free than in SPF mice, and winner B cells in germ-free germinal centres are enriched in 'public' clonotypes found in multiple individuals, indicating strong selection of B cell antigen receptors even in the absence of microbiota. Colonization of germ-free mice with a defined microbial consortium (Oligo-MM) does not eliminate germ-free-associated clonotypes, yet does induce a concomitant commensal-specific B cell response with the hallmarks of antigen-driven selection. Thus, positive selection of B cells can take place in steady-state gut-associated germinal centres, at a rate that is tunable over a wide range by the presence and composition of the microbiota.

摘要

生发中心是 B 细胞进化产生针对各种抗原高亲和力抗体的结构,通常在感染或免疫时于淋巴器官中短暂形成。然而,与肠道相关的生发中心在肠道相关的淋巴器官中持续存在。这些肠道相关的生发中心可以支持针对肠道感染和免疫的靶向抗体反应。但是,在面对这些结构所具有的慢性和多样化的抗原刺激时,B 细胞选择和抗体亲和力成熟是否发生,在稳态下并不清楚。在这里,我们通过结合多色“Brainbow”细胞命运图谱和单细胞免疫球蛋白基因测序,发现尽管生发中心 B 细胞快速周转,但无特定病原体(SPF)小鼠的肠道相关生发中心中有 5-10%在稳态时含有高度占主导地位的“赢家”B 细胞克隆。从这些克隆中衍生的单克隆抗体与未突变的前体相比,与共生菌的结合增加,这与抗原驱动的选择一致。无菌比 SPF 小鼠中高度选择的肠道相关生发中心的频率明显更高,无菌生发中心中的赢家 B 细胞富含在多个个体中发现的“公共”克隆型,表明即使没有微生物群,B 细胞抗原受体也受到强烈选择。用定义明确的微生物联合体(Oligo-MM)定植无菌小鼠不会消除无菌相关的克隆型,但确实会诱导具有抗原驱动选择特征的伴随共生特异性 B 细胞反应。因此,B 细胞的阳性选择可以在稳态肠道相关生发中心中发生,其速率可以通过微生物群的存在和组成在很宽的范围内进行调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c9f/7726069/315da93e9cc3/nihms-1616530-f0005.jpg

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