Bagnara Davide, Squillario Margherita, Kipling David, Mora Thierry, Walczak Aleksandra M, Da Silva Lucie, Weller Sandra, Dunn-Walters Deborah K, Weill Jean-Claude, Reynaud Claude-Agnès
Institut Necker-Enfants Malades, INSERM U1151-Centre National de la Recherche Scientifique Unité Mixte de Recherche 8253, Université Paris Descartes, Faculté de Médecine-Site Broussais, 75993 Paris Cedex 14, France;
Dipartimento di Informatica, Bioingegneria, Robotica e Ingegneria dei Sistemi, Università degli Studi di Genova, 16146 Genoa, Italy;
J Immunol. 2015 Oct 15;195(8):3716-24. doi: 10.4049/jimmunol.1500753. Epub 2015 Sep 9.
From paired blood and spleen samples from three adult donors, we performed high-throughput VH sequencing of human B cell subsets defined by IgD and CD27 expression: IgD(+)CD27(+) ("marginal zone [MZ]"), IgD(-)CD27(+) ("memory," including IgM ["IgM-only"], IgG and IgA) and IgD(-)CD27(-) cells ("double-negative," including IgM, IgG, and IgA). A total of 91,294 unique sequences clustered in 42,670 clones, revealing major clonal expansions in each of these subsets. Among these clones, we further analyzed those shared sequences from different subsets or tissues for VH gene mutation, H-CDR3-length, and VH/JH usage, comparing these different characteristics with all sequences from their subset of origin for which these parameters constitute a distinct signature. The IgM-only repertoire profile differed notably from that of MZ B cells by a higher mutation frequency and lower VH4 and higher JH6 gene usage. Strikingly, IgM sequences from clones shared between the MZ and the memory IgG/IgA compartments showed a mutation and repertoire profile of IgM-only and not of MZ B cells. Similarly, all IgM clonal relationships (among MZ, IgM-only, and double-negative compartments) involved sequences with the characteristics of IgM-only B cells. Finally, clonal relationships between tissues suggested distinct recirculation characteristics between MZ and switched B cells. The "IgM-only" subset (including cells with its repertoire signature but higher IgD or lower CD27 expression levels) thus appear as the only subset showing precursor-product relationships with CD27(+) switched memory B cells, indicating that they represent germinal center-derived IgM memory B cells and that IgM memory and MZ B cells constitute two distinct entities.
我们从三名成年供体的配对血液和脾脏样本中,对通过IgD和CD27表达定义的人类B细胞亚群进行了高通量VH测序:IgD(+)CD27(+)(“边缘区[MZ]”)、IgD(-)CD27(+)(“记忆”,包括IgM[“仅IgM”]、IgG和IgA)以及IgD(-)CD27(-)细胞(“双阴性”,包括IgM、IgG和IgA)。总共91,294个独特序列聚集成42,670个克隆,揭示了这些亚群中每个亚群的主要克隆扩增。在这些克隆中,我们进一步分析了来自不同亚群或组织的共享序列的VH基因突变、H-CDR3长度和VH/JH使用情况,并将这些不同特征与其起源亚群的所有序列进行比较,这些参数构成了一个独特的特征。仅IgM的库谱与MZ B细胞的库谱明显不同,其突变频率更高,VH4使用频率更低,JH6基因使用频率更高。引人注目的是,MZ与记忆IgG/IgA区室之间共享的克隆中的IgM序列显示出仅IgM的突变和库谱特征,而不是MZ B细胞的特征。同样,所有IgM克隆关系(在MZ、仅IgM和双阴性区室之间)都涉及具有仅IgM B细胞特征的序列。最后,组织之间的克隆关系表明MZ和转换B细胞之间具有不同的再循环特征。因此,“仅IgM”亚群(包括具有其库谱特征但IgD表达水平较高或CD27表达水平较低的细胞)似乎是唯一与CD27(+)转换记忆B细胞呈现前体-产物关系的亚群,这表明它们代表生发中心来源的IgM记忆B细胞,并且IgM记忆和MZ B细胞构成两个不同的实体。