Vergani Stefano, Yuan Joan
Developmental Immunology Unit, Division of Molecular Hematology, Department of Laboratory Medicine, Lund Stem Cell Center, Lund University, Lund, Sweden.
Immunol Rev. 2021 Mar;300(1):194-202. doi: 10.1111/imr.12949. Epub 2021 Jan 26.
The autoimmune checkpoint during B cell maturation eliminates self-antigen reactive specificities from the mature B cell repertoire. However, an exception to this rule is illustrated by B-1 cells, an innate-like self-reactive B cell subset that is positively selected into the mature B cell pool in a self-antigen-driven fashion. The mechanisms by which B-1 cells escape central tolerance have puzzled the field for decades. A key clue comes from their restricted developmental window during fetal and neonatal life. Here we use B-1 cells as a prototypic early life derived B cell subset to explore developmental changes in the constraints of B cell selection. We discuss recent advancements in the understanding of the molecular program, centered around the RNA binding protein Lin28b, that licenses self-reactive B-1 cell output during ontogeny. Finally, we speculate on the possible link between the unique rules of early life B cell tolerance and the establishment of B cell - microbial mutualism to propose an integrated model for how developmental and environmental cues come together to create a protective layer of B cell memory involved in neonatal immune imprinting.
B细胞成熟过程中的自身免疫检查点从成熟B细胞库中消除了自身抗原反应性特异性。然而,B-1细胞为例外,它是一种先天性自身反应性B细胞亚群,以自身抗原驱动的方式被阳性选择进入成熟B细胞池。几十年来,B-1细胞逃避中枢耐受的机制一直困扰着该领域。一个关键线索来自它们在胎儿和新生儿期有限的发育窗口。在这里,我们将B-1细胞作为源自早期生命的典型B细胞亚群,以探索B细胞选择限制中的发育变化。我们讨论了围绕RNA结合蛋白Lin28b的分子程序理解方面的最新进展,该程序在个体发育过程中许可自身反应性B-1细胞输出。最后,我们推测早期生命B细胞耐受的独特规则与B细胞 - 微生物共生关系建立之间的可能联系,以提出一个综合模型,说明发育和环境线索如何共同作用,形成参与新生儿免疫印记的B细胞记忆保护层。