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Molecular footprints of a germinal center derivation of human IgM+(IgD+)CD27+ B cells and the dynamics of memory B cell generation

机译:人类IgM +(IgD +)CD27 + B细胞生发中心衍生的分子足迹和记忆B细胞生成的动力学

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摘要

The origin of IgM+CD27+ B lymphocytes with mutated IgV genes, which account for ∼20% of human peripheral blood (PB) B cells, is controversially discussed. A generation in a primary diversification pathway, in T cell–independent immune responses, or in T cell–dependent germinal center (GC) reactions has been proposed. We show here that IgM+IgD+CD27+ and IgM+IgD−/lowCD27+ B cell subsets carry, like class-switched memory B cells, mutations in the Bcl6 gene as a genetic trait of a GC experience. Moreover, the identification of PB IgM+IgD+CD27+ B cells clonally related to GC-derived IgG+ memory B cells with shared and distinct IgV gene mutations demonstrates the GC origin also of the former subset. These findings provide genetic evidence for a GC derivation of somatically mutated IgM+ B cells and indicate that adult humans harbor a large population of IgM+IgD+ post-GC memory B cells. Furthermore, the analysis revealed that a highly diverse and often very large population of memory B cells is generated from a given GC B cell clone, and that (preferentially IgM) memory B cells are generated already early in the GC reaction. This provides novel insights into the dynamics of GC reactions and the generation of a memory B cell repertoire.
机译:有争议的讨论了具有突变的IgV基因的IgM + CD27 + B淋巴细胞的起源,约占人外周血(PB)B细胞的20%。已经提出了在主要的多元化途径,不依赖T细胞的免疫反应或依赖T细胞的生发中心(GC)反应中产生的一代。我们在这里显示,IgM + IgD + CD27 +和IgM + IgD- / lowCD27 + B细胞子集与类转换记忆B细胞一样,将Bcl6基因突变作为GC经验的遗传特征。此外,与具有衍生且独特的IgV基因突变的GC衍生的IgG +记忆B细胞克隆相关的PB IgM + IgD + CD27 + B细胞的鉴定证明,GC起源也属于前一个亚群。这些发现为体细胞突变的IgM + B细胞的GC衍生提供了遗传学证据,并表明成年人类具有大量的IgM + IgD + GC后记忆B细胞。此外,分析揭示了从给定的GC B细胞克隆产生高度多样化且通常非常大的记忆B细胞群体,并且(优选IgM)记忆B细胞已经在GC反应的早期产生。这为GC反应的动力学和记忆B细胞库的产生提供了新颖的见解。

著录项

  • 作者

    Seifert, Marc; Küppers, Ralf;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-20 20:38:04

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