Flt3 ligand expands bona fide innate lymphoid cell precursors in vivo.
Sara M ParigiPaulo CzarnewskiSrustidhar DasChristiane SteegLeonie BrockmannSara Fernandez-GaiteroVictor YmanMarianne ForkelCharlotte HöögJenny MjösbergLisa S WesterbergAnna FärnertSamuel HuberThomas JacobsEduardo J VillablancaPublished in: Scientific reports (2018)
A common helper-like innate lymphoid precursor (CHILP) restricted to the innate lymphoid cells (ILC) lineage has been recently characterized. While specific requirements of transcription factors for CHILPs development has been partially described, their ability to sense cytokines and react to peripheral inflammation remains unaddressed. Here, we found that systemic increase in Flt3L levels correlated with the expansion of Lineage (Lin)negα4β7+ precursors in the adult murine bone marrow. Expanded Linnegα4β7+ precursors were bona fide CHILPs as seen by their ability to differentiate into all helper ILCs subsets but cNK in vivo. Interestingly, Flt3L-expanded CHILPs transferred into lymphopenic mice preferentially reconstituted the small intestine. While we did not observe changes in serum Flt3L during DSS-induced colitis in mice or plasma from inflammatory bowel disease (IBD) patients, elevated Flt3L levels were detected in acute malaria patients. Interestingly, while CHILP numbers were stable during the course of DSS-induced colitis, they expanded following increased serum Flt3L levels in malaria-infected mice, hence suggesting a role of the Flt3L-ILC axis in malaria. Collectively, our results indicate that Flt3L expands CHILPs in the bone marrow, which might be associated with specific inflammatory conditions.
Keyphrases
- acute myeloid leukemia
- tyrosine kinase
- bone marrow
- end stage renal disease
- chronic kidney disease
- oxidative stress
- newly diagnosed
- ejection fraction
- transcription factor
- single cell
- peritoneal dialysis
- high fat diet induced
- mesenchymal stem cells
- dendritic cells
- stem cells
- regulatory t cells
- type diabetes
- plasmodium falciparum
- insulin resistance
- liver failure
- adipose tissue
- patient reported outcomes
- cell proliferation
- signaling pathway
- respiratory failure
- wild type
- dna binding
- high density