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生发中心内的人淋巴结中的趋同进化和 B 细胞再循环。

Convergent evolution and B-cell recirculation in germinal centers in a human lymph node.

机构信息

https://ror.org/02js37d36 IBM Research Europe, Rüschlikon, Switzerland.

Department of Biosystems Science and Engineering, ETH Zurich, Basel, Switzerland.

出版信息

Life Sci Alliance. 2023 Aug 28;6(11). doi: 10.26508/lsa.202301959. Print 2023 Nov.

Abstract

Germinal centers (GCs) play a central role in generating an effective immune response against infectious pathogens, and failures in their regulating mechanisms can lead to the development of autoimmune diseases and cancer. Although previous works study experimental systems of the immune response with mouse models that are immunized with specific antigens, our study focused on a real-life situation, with an ongoing GC response in a human lymph node (LN) involving multiple asynchronized GCs reacting simultaneously to unknown antigens. We combined laser capture microdissection of individual GCs from human LN with next-generation repertoire sequencing to characterize individual GCs as distinct evolutionary spaces. In line with well-characterized GC responses in mice, elicited by immunization with model antigens, we observe a heterogeneous clonal diversity across individual GCs from the same human LN. Still, we identify shared clones in several individual GCs, and phylogenetic tree analysis combined with paratope modeling suggest the re-engagement and rediversification of B-cell clones across GCs and expanded clones exhibiting shared antigen responses across distinct GCs, indicating convergent evolution of the GCs.

摘要

生发中心(GCs)在产生针对感染性病原体的有效免疫反应方面发挥着核心作用,其调节机制的失效可能导致自身免疫性疾病和癌症的发生。尽管之前的研究工作使用针对特定抗原免疫的小鼠模型来研究免疫反应的实验系统,但我们的研究侧重于现实情况,即人类淋巴结(LN)中正在进行的 GC 反应涉及多个同时对未知抗原起反应的非同步 GC。我们将来自人类 LN 的单个 GC 的激光捕获显微切割与下一代库测序相结合,将单个 GC 描绘为独特的进化空间。与用模型抗原免疫小鼠引发的特征明确的 GC 反应一致,我们观察到来自同一人类 LN 的单个 GC 之间存在异质的克隆多样性。尽管如此,我们在几个单个 GC 中识别出了共享的克隆,系统发育树分析结合表位建模表明,B 细胞克隆在 GC 之间重新参与和重新多样化,并且在不同 GC 之间表现出共享抗原反应的扩增克隆表明 GC 的趋同进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f97f/10462906/b337669408cc/LSA-2023-01959_Fig1.jpg

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