RelB NF-κB tunes Notch2 signaling to promote IL-23-secreting solitary isolated lymphoid tissue–resident DCs critical for gut immunity
Abstract
While preserving tolerance toward commensals, dendritic cells (DCs) also orchestrate response against pathogens. The noncanonical RelB NF-κB pathway in DCs curbs tolerogenic Tregs in the intestine. Whether RelB-dependent DC regulations also impact intestinal immunity remains less clear. Here, we show that genetic ablation of RelB in DCs compromises IL-23-dependent immune response in the intestine, imparting vulnerability in Relb ΔCD11c mice to infection with Citrobacter rodentium , an enteropathogen. Our mechanistic studies revealed that RelB supported the expression of RBP-J from a κB site-driven promoter, tuning Notch2 response in DCs. This RelB-mediated Notch2 control specified a solitary isolated lymphoid tissue–resident DC subset, which served as a dominant source of IL-23 in infected mice. Indeed, we found that IL-23 supplementation readily rescued the immune deficiency of Relb ΔCD11c mice, improving bacterial clearance. In sum, we illustrate a previously unrecognized crosstalk between RelB and Notch2 underpinning IL-23-secreting DCs critical for gut immunity.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (6)
Naveen Kumar
Alvina Deka
Systems Immunology Laboratory, Biotechnology Research and Innovation Council-National Institute of Immunology
Swapnava Basu
Systems Immunology Laboratory, Biotechnology Research and Innovation Council-National Institute of Immunology
Ashish Kumar Mishra
Systems Immunology Laboratory, Biotechnology Research and Innovation Council-National Institute of Immunology
Deepakshi Sahu
Systems Immunology Laboratory, Biotechnology Research and Innovation Council-National Institute of Immunology
Soumen Basak
Systems Immunology Laboratory, Biotechnology Research and Innovation Council-National Institute of Immunology