2 research outputs found
New paradigm in NKT cell antigens: MCSâ0208 (2â(Hydroxymethyl)phenylthioâphytoceramide) an arylâphytoceramide compound with a single hydroxyl group stimulates NKT cells
Natural Killer T (NKT) cells play an important role in the immune response and can be activated by glycolipids presented by CD1d protein. We present MCSâ0208, an unprecedented arylthioetherâphytoceramide able to induce potent invariant NKT (iNKT) cell activation, notably when tested in human iNKT cells. This arylsphingolipid analog has a simple phenyl group containing a single hydroxyl substituent as a surrogate of the sugar ring. The phenylthioether structure contrasts with αâgalactosylceramide (1), the prototypical glycolipid used to induce iNKT cell stimulation, where the galactose 2ââOH and 3ââOH substituents are accepted as the minimal footprint and considered critical for NKT T cell receptor (TCR) recognition. A computational study supports the recognition of aromatic compound by the CD1d and TCR proteins as radically new structures for NKT cell stimulation
New Paradigm in NKT Cell Antigens : MCS-0208 (2-(Hydroxymethyl)phenylthio-phytoceramide) - an Aryl-Phytoceramide Compound with a Single Hydroxyl Group Stimulates NKT Cells
Natural Killer T (NKT) cells play an important role in the immune response and can be activated by glycolipids presented by CD1d protein. We present MCS-0208, an unprecedented arylthioether-phytoceramide able to induce potent invariant NKT (iNKT) cell activation, notably when tested in human iNKT cells. This arylsphingolipid analog has a simple phenyl group containing a single hydroxyl substituent as a surrogate of the sugar ring. The phenylthioether structure contrasts with α-galactosylceramide (1), the prototypical glycolipid used to induce iNKT cell stimulation, where the galactose 2'-OH and 3'-OH substituents are accepted as the minimal footprint and considered critical for NKT T cell receptor (TCR) recognition. A computational study supports the recognition of aromatic compound by the CD1d and TCR proteins as radically new structures for NKT cell stimulation. Stimulating NKT cells. Breaking the rules of chemical structure of antigens for NKT cells stimulation, a single phenyl-hydorxymethyl moiety is able to stimulate NKT cells via CD1d presentation. The replacement of alpha-galacose by hydroxymethyl-phenyl-thioether lead to a interesting new NKT cell antigen, opening an unexplored chemical space for new antigens development with promising profile