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Ceramide-CD300f Binding Inhibits Lipopolysaccharide-induced Skin Inflammation*

Authors :
Ayako Kaitani
Jiro Kitaura
Masamichi Isobe
Koichiro Uchida
Toshiaki Shimizu
Nobuhiro Nakano
Ko Okumura
Toshio Kitamura
Keiko Maeda
Hideoki Ogawa
Akie Maehara
Emiko Shiba
Kumi Izawa
Source :
The Journal of Biological Chemistry
Publication Year :
2017
Publisher :
American Society for Biochemistry and Molecular Biology, 2017.

Abstract

LPS triggers inflammatory responses; however, the negative regulation of LPS responses in vivo remains poorly understood. CD300f is an inhibitory receptor among the CD300 family of paired activating and inhibitory receptors. We have previously identified ceramide as a ligand for CD300f and shown that the binding of ceramide to CD300f inhibits IgE-mediated mast cell activation and allergic responses in mouse models. Here we identify the critical role of CD300f in inhibiting LPS-induced skin inflammation. CD300f deficiency remarkably enhanced LPS-induced skin edema and neutrophil recruitment in mice. Higher levels of factors that increase vascular permeability and of factors that induce neutrophil recruitment were detected in LPS-injected skin pouch exudates of CD300f-/- mice as compared with wild-type mice. CD300f was highly expressed in mast cells and recruited neutrophils, but not in macrophages, among skin myeloid cells. CD300f deficiency failed to influence the intrinsic migratory ability of neutrophils. Ceramide-CD300f binding suppressed the release of chemical mediators from mast cells and from neutrophils in response to LPS. Adoptive transfer experiments indicated that mast cells mediated enhanced edema in LPS-stimulated skin of CD300f-/- mice, whereas mast cells together with recruited neutrophils mediated robust neutrophil accumulation. Importantly, administering a ceramide antibody or ceramide-containing vesicles enhanced or suppressed LPS-induced skin inflammation of wild-type mice, respectively. Thus, ceramide-CD300f binding inhibits LPS-induced skin inflammation, implicating CD300f as a negative regulator of Toll-like receptor 4 (TLR4) signaling in vivo.

Details

Language :
English
ISSN :
1083351X and 00219258
Volume :
292
Issue :
7
Database :
OpenAIRE
Journal :
The Journal of Biological Chemistry
Accession number :
edsair.doi.dedup.....2a35d6b97745e2dda54ff8e2677e6ef8