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Sulfatide, A Major Lipid Component of Myelin Sheath, Activates Inflammatory Responses as an Endogenous Stimulator in Brain-Resident Immune Cells

Authors
Jeon, Sae-BomYoon, Hee JungPark, Se-HoKim, In-HooPark, Eun Jung
Issue Date
1-12월-2008
Publisher
AMER ASSOC IMMUNOLOGISTS
Citation
JOURNAL OF IMMUNOLOGY, v.181, no.11, pp.8077 - 8087
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF IMMUNOLOGY
Volume
181
Number
11
Start Page
8077
End Page
8087
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/122250
DOI
10.4049/jimmunol.181.11.8077
ISSN
0022-1767
Abstract
Sulfatide, a major lipid component of myelin sheath, participates in diverse cellular events of the CNS, and its cellular level has recently been implicated in many inflammation-associated neuronal diseases. Herein, we report that sulfatide alone can trigger pathological inflammatory responses in glia, brain-resident immune cells. We show that sulfatide changed the morphology of primary microglia to their activated form, and it significantly induced the production of various inflammatory mediators in primary microglia and astrocytes. Moreover, sulfatide rapidly triggered the phosphorylation of p38, ERK, and JNK within 30 min, and it markedly enhanced the NF binding activity to NF-kappa B and AP-1 binding elements. However, nonsulfated galactocerebroside, another major lipid component of myelin, had no effect on activation of glia. We further reveal that CD1d did not contribute to sulfatide-stimulated activation of MAPKs, although its expression was enhanced by sulfatide and sulfatide-treated microglial cells actually stimulated type II NKT cells. Sulfatide significantly stimulated the phosphorylation of MAPKs in glia from CD1d-deficient mice, and the phosphorylation levels were similar to those in wild-type littermates. Sulfatide-triggered inflammatory events appear to occur at least in part through an L-selectin-dependent mechanism. L-selectin was dramatically down-regulated upon exposure to sulfatide, and inhibition of L-selectin resulted in suppression of sulfatide-triggered responses. Collectively, these results show that abnormally released sulfatide at demyelinated regions may act as an endogenous stimulator in the brain immune system, thus causing and further exacerbating pathological conditions in the brain. The Journal of Immunology, 2008, 181: 8077-8087.
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