Postnatal expansion of mesenteric lymph node stromal cells towards reticular and CD34+ stromal cell subsets

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作者
Joern Pezoldt
Carolin Wiechers
Mangge Zou
Maria Litovchenko
Marjan Biocanin
Michael Beckstette
Katarzyna Sitnik
Martina Palatella
Guido van Mierlo
Wanze Chen
Vincent Gardeux
Stefan Floess
Maria Ebel
Julie Russeil
Panagiota Arampatzi
Ehsan Vafardanejad
Antoine-Emmanuel Saliba
Bart Deplancke
Jochen Huehn
机构
[1] Helmholtz Centre for Infection Research,Department Experimental Immunology
[2] École Polytechnique Fédérale de Lausanne,Laboratory of Systems Biology and Genetics
[3] Helmholtz Centre for Infection Research and Hannover Medical School,Department of Computational Biology for Individualised Medicine, Centre for Individualised Infection Medicine
[4] Bielefeld University,Genome Informatics Group, Bielefeld Institute for Bioinformatics Infrastructure, Department of Technology
[5] University of Veterinary Medicine Vienna,Institute of Animal Breeding and Genetics
[6] University of Wuerzburg,Core Unit Systems Medicine
[7] Helmholtz Center for Infection Research (HZI),Helmholtz Institute for RNA
[8] Hannover Medical School,based Infection Research (HIRI)
来源
Nature Communications | / 13卷
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摘要
Gut-draining mesenteric lymph nodes (LN) provide the framework to shape intestinal adaptive immune responses. Based on the transcriptional signatures established by our previous work, the composition and immunomodulatory function of LN stromal cells (SC) vary according to location. Here, we describe the single-cell composition and development of the SC compartment within mesenteric LNs derived from postnatal to aged mice. We identify CD34+ SC and fibroblastic reticular stromal cell (FRC) progenitors as putative progenitors, both supplying the typical rapid postnatal mesenteric LN expansion. We further establish the location-specific chromatin accessibility and DNA methylation landscape of non-endothelial SCs and identify a microbiota-independent core epigenomic signature, showing characteristic differences between SCs from mesenteric and skin-draining peripheral LNs. The epigenomic landscape of SCs points to dynamic expression of Irf3 along the differentiation trajectories of FRCs. Accordingly, a mesenchymal stem cell line acquires a Cxcl9+ FRC molecular phenotype upon lentiviral overexpression of Irf3, and the relevance of Irf3 for SC biology is further underscored by the diminished proportion of Ccl19+ and Cxcl9+ FRCs in LNs of Irf3-/- mice. Together, our data constitute a comprehensive transcriptional and epigenomic map of mesenteric LNSC development in early life and dissect location-specific, microbiota-independent properties of non-endothelial SCs.
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