Self-glycerophospholipids activate murine phospholipid-reactive Tcells and inhibit iNKTcell activation by competing with ligands for CD1d loading
EUROPEAN JOURNAL OF IMMUNOLOGY
Authors: Halder, Ramesh Chandra; Tran, Cynthia; Prasad, Priti; Wang, Jing; Nallapothula, Dhiraj; Ishikawa, Tatsuya; Wang, Meiying; Zajonc, Dirk M.; Singh, Ram Raj
Abstract
Glycosphingolipids and glycerophospholipids bind CD1d. Glycosphingolipid-reactive invariant NKT-cells (iNKT) exhibit myriad immune effects, however, little is known about the functions of phospholipid-reactive Tcells (PLT). We report that the normal mouse immune repertoire contains Tcells, which recognize self-glycerophospholipids such as phosphatidic acid (PA) in a CD1d-restricted manner and don't cross-react with iNKT-cell ligands. PA bound to CD1d in the absence of lipid transfer proteins. Upon in vivo priming, PA induced an expansion and activation of Tcells in Ag-specific manner. Crystal structure of the CD1d:PA complex revealed that the ligand is centrally located in the CD1d-binding groove opening for TCR recognition. Moreover, the increased flexibility of the two acyl chains in diacylglycerol ligands and a less stringent-binding orientation for glycerophospholipids as compared with the bindings of glycosphingolipids may allow glycerophospholipids to readily occupy CD1d. Indeed, PA competed with -galactosylceramide to load onto CD1d, leading to reduced expression of CD1d:-galactosylceramide complexes on the surface of dendritic cells. Consistently, glycerophospholipids reduced iNKT-cell proliferation, expansion, and cytokine production in vitro and in vivo. Such superior ability of self-glycerophospholipids to compete with iNKT-cell ligands to occupy CD1d may help maintain homeostasis between the diverse subsets of lipid-reactive Tcells, with important pathogenetic and therapeutic implications.
Phenyl Glycolipids with Different Glycosyl Groups Exhibit Marked Differences in Murine and Human iNKT Cell Activation
ACS CHEMICAL BIOLOGY
Authors: Wu, Tai-Na; Lin, Kun-Hsien; Wu, Ying-Ta; Huang, Jing-Rong; Hung, Jung-Tung; Wu, Jen-Chine; Chen, Chien-Yu; Chu, Kuo-Ching; Lin, Nan-Horng; Yu, Alice L.; Wong, Chi-Huey
Abstract
Glycosphingolipids (GSLs) bearing the agalactosyl headgroup and the acyl chain terminated with a phenyl derivative were found to be more potent than agalactosyl ceramide (alpha GalCer) to stimulate both murine and human invariant natural killer T (iNKT) cells and to induce an antibody isotope switch to IgG. In this study, we replaced the galactosyl group with glucose (alpha Glc) and its fluoro-analogs and found that phenyl GSLs with alpha Glc (C34-Glc) and its fluoro-analog 6F-C34-Glc were stronger than those with alpha Gal in stimulating human iNKT cells but weaker in mice. Their activities have a strong correlation with the binding avidities of the ternary interaction between the iNKT-cell receptor (iNKTCR) and CD1d-GSL complex. It was the iNKTCR rather than CD1d that dictated the species-specific responses. C34-Glc was further used as an adjuvant for a SSEA4-crm-197 vaccine, and after immunization in mice, the vaccine was highly effective against Lewis lung carcinoma.