Neonatally imprinted stromal cell subsets induce tolerogenic dendritic cells in mesenteric lymph nodes

新生儿印记基质细胞亚群诱导肠系膜淋巴结中产生耐受性树突状细胞

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作者:Joern Pezoldt ,Maria Pasztoi ,Mangge Zou ,Carolin Wiechers ,Michael Beckstette ,Guilhem R Thierry ,Ehsan Vafadarnejad ,Stefan Floess ,Panagiota Arampatzi ,Manuela Buettner ,Janina Schweer ,Diana Fleissner ,Marius Vital ,Dietmar H Pieper ,Marijana Basic ,Petra Dersch ,Till Strowig ,Mathias Hornef ,André Bleich ,Ulrike Bode ,Oliver Pabst ,Marc Bajénoff ,Antoine-Emmanuel Saliba ,Jochen Huehn

Abstract

Gut-draining mesenteric lymph nodes (mLNs) are important for inducing peripheral tolerance towards food and commensal antigens by providing an optimal microenvironment for de novo generation of Foxp3+ regulatory T cells (Tregs). We previously identified microbiota-imprinted mLN stromal cells as a critical component in tolerance induction. Here we show that this imprinting process already takes place in the neonatal phase, and renders the mLN stromal cell compartment resistant to inflammatory perturbations later in life. LN transplantation and single-cell RNA-seq uncover stably imprinted expression signatures in mLN fibroblastic stromal cells. Subsetting common stromal cells across gut-draining mLNs and skin-draining LNs further refine their location-specific immunomodulatory functions, such as subset-specific expression of Aldh1a2/3. Finally, we demonstrate that mLN stromal cells shape resident dendritic cells to attain high Treg-inducing capacity in a Bmp2-dependent manner. Thus, crosstalk between mLN stromal and resident dendritic cells provides a robust regulatory mechanism for the maintenance of intestinal tolerance.

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