Siu Jacqueline H Y, Pitcher Michael J, Tull Thomas J, Velounias Rebekah L, Guesdon William, Montorsi Lucia, Mahbubani Krishnaa T, Ellis Richard, Dhami Pawan, Todd Katrina, Kadolsky Ulrich D, Kleeman Michelle, D'Cruz David P, Saeb-Parsy Kourosh, Bemark Mats, Pettigrew Gavin J, Spencer Jo
Department of Surgery, University of Cambridge and NIHR Cambridge Biomedical Research Centre, Cambridge CB2 0QQ, UK.
School of Immunology and Microbial Sciences, King's College London, Guy's Campus, London SE1 9RT, UK.
Sci Immunol. 2022 Mar 18;7(69):eabm9060. doi: 10.1126/sciimmunol.abm9060.
B cells generate antibodies that are essential for immune protection, but their subgroups are poorly defined. Here, we perform undirected deep profiling of B cells in matched human lymphoid tissues from deceased transplant organ donors and blood. In addition to identifying unanticipated features of tissue-based B cell differentiation, we resolve two subsets of marginal zone B (MZB) cells differing in cell surface and transcriptomic profiles, clonal relationships to other subsets, enrichment of genes in the NOTCH pathway, distribution bias within splenic marginal zone microenvironment, and immunoglobulin repertoire diversity and hypermutation frequency. Each subset is present in spleen, gut-associated lymphoid tissue, mesenteric lymph nodes, and blood. MZB cells and the lineage from which they are derived are depleted in lupus nephritis. Here, we show that this depletion is of only one MZB subset. The other remains unchanged as a proportion of total B cells compared with health. Thus, it is important to factor MZB cell heterogeneity into studies of human B cell responses and pathology.
B细胞产生对免疫保护至关重要的抗体,但其亚群定义尚不明确。在此,我们对已故移植器官供体的匹配人类淋巴组织和血液中的B细胞进行了无导向深度分析。除了识别基于组织的B细胞分化的意外特征外,我们还解析了边缘区B(MZB)细胞的两个亚群,它们在细胞表面和转录组图谱、与其他亚群的克隆关系、NOTCH通路中基因的富集、脾边缘区微环境内的分布偏差以及免疫球蛋白库多样性和超突变频率方面存在差异。每个亚群都存在于脾脏、肠道相关淋巴组织、肠系膜淋巴结和血液中。狼疮性肾炎中MZB细胞及其来源的谱系会减少。在此,我们表明这种减少仅发生在一个MZB亚群中。与健康状态相比,另一个亚群作为总B细胞的比例保持不变。因此,在人类B细胞反应和病理学研究中考虑MZB细胞异质性很重要。