bioRxiv Science⌕ Search

Biology subjects

Stehle, C.

Publications and source records attributed to Stehle, C..

2 recordsLinked to original sources

Perinatal brain group 3 innate lymphoid cells are involved in the formation of murine dural lymphatics

The central nervous system (CNS) contains a pool of innate lymphoid cells (ILCs) of unclear composition and functionality and unknown origin. Here, we demonstrate that group 1 ILCs (inc. ex-ILC3s) and ILC2s are resident cells with low proliferative capacities and subtype specific CNS compartmentalization. We show for the first time that CNS ILC seeding and niche establishment occurs during early life and is initiated by both, ILC progenitors-like PLFZ+PD- 1+ cells and lineage committed ILCs. While group 1 ILCs and ROR{gamma}t+ ILC3s were found within the embryonic and postnatal brain, ILC2s reached the CNS after birth and were predominantly localized within the dura mater, proving early regional distribution. Interestingly, ROR{gamma}t+ ILC3s were only detected perinatally and vanished from the CNS as an outcome of decreased turnover and in situ ILC3-to-ILC1 conversion. Remarkably, we showed that perinatal ROR{gamma}t+ ILC3s are required for the correct development of the lymphatic vessels within the dura.

immunology↗

Cross-species analyses reveal RORγt-expressing dendritic cells are a lineage of antigen presenting cells conserved across tissues

Conventional dendritic cells (cDCs) are potent antigen presenting cells (APCs) that exhibit tissue and age-specific diversity allowing them to direct situation-adapted immunity. Thereby they harbor great potential for being targeted in vaccination and cancer. Here, we resolve conflicting data about expression of retinoic acid receptor-related orphan receptor-{gamma}t (ROR{psi}t) in cDCs. We show that ROR{psi}t+ DCs exist in murine lymphoid and non-lymphoid tissues across age. Fate mapping, functional assays and single cell multiomic profiling reveal these cells as ontogenetically and transcriptionally distinct from other well characterized cDC subtypes, as well as from ROR{psi}t+ type 3 innate lymphocytes (ILC3s). We show that ROR{psi}t+ DCs can migrate to lymph nodes and activate naive CD4+ T cells in response to inflammatory triggers. Comparative and cross-species transcriptomics revealed homologous populations in human spleen, lymph nodes and intestines. Further, integrated meta-analyses aligned ROR{psi}t+ DCs identified here with other emerging populations of ROR{psi}t+APCs, including R-DC-like cells, Janus cells/extrathymic Aire expressing cells (eTACs) and subtypes of Thetis cells. While ROR{psi}t+APCs have primarily been linked to T cell tolerance, our work establishes ROR{psi}t+ DCs as unique lineage of immune sentinel cells conserved across tissues and species that expands the functional repertoire of ROR{psi}t+ APCs beyond promoting tolerance. One sentence summaryROR{gamma}t+ DC exhibit versatile APC functions and are a distinct immune lineage conserved across age, tissues and species that entails Thetis cells, Janus cells/ROR{gamma}t+ eTACs and R-DC-like cells.

immunology↗