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Origin and differentiation trajectories of fibroblastic reticular cells in the splenic white pulp

Cheng, Hung-Wei; Onder, Lucas; Novkovic, Mario; Soneson, Charlotte; Lütge, Mechthild; Pikor, Natalia; Scandella, Elke; Robinson, Mark D; Miyazaki, Jun-Ichi; Tersteegen, Anne; Sorg, Ursula; Pfeffer, Klaus; Rülicke, Thomas; Hehlgans, Thomas; Ludewig, Burkhard (2019). Origin and differentiation trajectories of fibroblastic reticular cells in the splenic white pulp. Nature Communications, 10(1):1739.

Abstract

The splenic white pulp is underpinned by poorly characterized stromal cells that demarcate distinct immune cell microenvironments. Here we establish fibroblastic reticular cell (FRC)-specific fate-mapping in mice to define their embryonic origin and differentiation trajectories. Our data show that all reticular cell subsets descend from multipotent progenitors emerging at embryonic day 19.5 from periarterial progenitors. Commitment of FRC progenitors is concluded during the first week of postnatal life through occupation of niches along developing central arterioles. Single cell transcriptomic analysis facilitated deconvolution of FRC differentiation trajectories and indicated that perivascular reticular cells function both as adult lymphoid organizer cells and mural cell progenitors. The lymphotoxin-β receptor-independent sustenance of postnatal progenitor stemness unveils that systemic immune surveillance in the splenic white pulp is governed through subset specification of reticular cells from a multipotent periarterial progenitor cell. In sum, the finding that discrete signaling events in perivascular niches determine the differentiation trajectories of reticular cell networks explains the development of distinct microenvironmental niches in secondary and tertiary lymphoid tissues that are crucial for the induction and regulation of innate and adaptive immune processes.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Institute of Molecular Life Sciences
Dewey Decimal Classification:570 Life sciences; biology
Scopus Subject Areas:Physical Sciences > General Chemistry
Life Sciences > General Biochemistry, Genetics and Molecular Biology
Physical Sciences > General Physics and Astronomy
Language:English
Date:15 April 2019
Deposited On:31 Jan 2020 15:50
Last Modified:04 Sep 2024 03:39
Publisher:Nature Publishing Group
ISSN:2041-1723
OA Status:Gold
Free access at:PubMed ID. An embargo period may apply.
Publisher DOI:https://doi.org/10.1038/s41467-019-09728-3
PubMed ID:30988302
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