Division of Cell Fate Regulation, Research Institute for Biomedical Sciences, Tokyo University of Science, Chiba, Japan.
Department of Microbiology and Immunology, Nihon University School of Dentistry, Tokyo, Japan.
J Immunol. 2024 Aug 1;213(3):296-305. doi: 10.4049/jimmunol.2400072.
During the perinatal period, the immune system sets the threshold to select either response or tolerance to environmental Ags, which leads to the potential to provide a lifetime of protection and health. B-1a B cells have been demonstrated to develop during this perinatal time window, showing a unique and restricted BCR repertoire, and these cells play a major role in natural Ab secretion and immune regulation. In the current study, we developed a highly efficient temporally controllable RAG2-based lymphoid lineage cell labeling and tracking system and applied this system to understand the biological properties and contribution of B-1a cells generated at distinct developmental periods to the adult B-1a compartments. This approach revealed that B-1a cells with a history of RAG2 expression during the embryonic and neonatal periods dominate the adult B-1a compartment, including those in the bone marrow (BM), peritoneal cavity, and spleen. Moreover, the BCR repertoire of B-1a cells with a history of RAG2 expression during the embryonic period was restricted, becoming gradually more diverse during the neonatal period, and then heterogeneous at the adult stage. Furthermore, more than half of plasmablasts/plasma cells in the adult BM had embryonic and neonatal RAG2 expression histories. Moreover, BCR analysis revealed a high relatedness between BM plasmablasts/plasma cells and B-1a cells derived from embryonic and neonatal periods, suggesting that these cell types have a common origin. Taken together, these findings define, under native hematopoietic conditions, the importance in adulthood of B-1a cells generated during the perinatal period.
在围产期,免疫系统设定了选择对环境抗原产生应答还是耐受的阈值,从而有可能提供终生的保护和健康。已经证明,B-1a B 细胞在这个围产期时间窗口中发育,表现出独特且受限的 BCR 库,这些细胞在天然 Ab 分泌和免疫调节中发挥主要作用。在本研究中,我们开发了一种高效的、具有时间可控性的基于 RAG2 的淋巴谱系细胞标记和跟踪系统,并应用该系统来了解在不同发育阶段产生的 B-1a 细胞的生物学特性和贡献,以形成成年 B-1a 区室。该方法表明,在胚胎期和新生儿期具有 RAG2 表达史的 B-1a 细胞主导成年 B-1a 区室,包括骨髓(BM)、腹腔和脾脏中的 B-1a 细胞。此外,在胚胎期具有 RAG2 表达史的 B-1a 细胞的 BCR 库受到限制,在新生儿期逐渐变得更加多样化,然后在成年期变得异质。此外,成年 BM 中的半数以上浆母细胞/浆细胞具有胚胎期和新生儿期的 RAG2 表达史。此外,BCR 分析显示 BM 浆母细胞/浆细胞与源自胚胎期和新生儿期的 B-1a 细胞之间具有高度相关性,表明这些细胞类型具有共同的起源。总之,这些发现定义了在天然造血条件下,围产期产生的 B-1a 细胞在成年期的重要性。