生物
免疫系统
细胞生物学
免疫学
B细胞
生发中心
相互作用体
免疫
体液免疫
抗体
遗传学
基因
作者
Mechthild Lütge,Angelina De Martin,Cristina Gil‐Cruz,Christian Perez‐Shibayama,Yves Stanossek,Lucas Onder,Hung‐Wei Cheng,Lothar Kürz,Nadine Cadosch,Charlotte Soneson,Mark D. Robinson,Sandro J. Stoeckli,Burkhard Ludewig,Natalia Pikor
标识
DOI:10.1038/s41590-023-01503-3
摘要
Abstract B cell zone reticular cells (BRCs) form stable microenvironments that direct efficient humoral immunity with B cell priming and memory maintenance being orchestrated across lymphoid organs. However, a comprehensive understanding of systemic humoral immunity is hampered by the lack of knowledge of global BRC sustenance, function and major pathways controlling BRC–immune cell interactions. Here we dissected the BRC landscape and immune cell interactome in human and murine lymphoid organs. In addition to the major BRC subsets underpinning the follicle, including follicular dendritic cells, PI16 + RCs were present across organs and species. As well as BRC-produced niche factors, immune cell-driven BRC differentiation and activation programs governed the convergence of shared BRC subsets, overwriting tissue-specific gene signatures. Our data reveal that a canonical set of immune cell-provided cues enforce bidirectional signaling programs that sustain functional BRC niches across lymphoid organs and species, thereby securing efficient humoral immunity.
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