Human CD1b and CD1c isoforms survey different intracellular compartments for the presentation of microbial lipid antigens
JOURNAL OF EXPERIMENTAL MEDICINE
Authors: Briken, V; Jackman, RM; Watts, GFM; Rogers, RA; Porcelli, SA
Abstract
CD1b and CD1c are antigen-presenting molecules that mediate recognition of bacterial lipids by T cells, but it is currently not known whether these two molecules are redundant or are specialized to perform different immunological functions. Here, we show chat the distribution of CD1c in human dendritic cells was characterized by a high ratio of cell surface to intracellular molecules, whereas CD1b showed a reciprocal pattern of distribution. In contrast to the accumulation of CD1b in lysosomal major histocompatibility complex class II compartments, intracellular CD1c molecules accumulated in other endocytic compartments, most likely early and late endosomes. Deletion of the cytoplasmic tail of CD1c, containing a tyrosine-based internalization motif, abolished most of its intracellular localization. Functional studies using T cells specific for defined lipid antigens revealed that in contrast to CD1b-mediated antigen presentation, antigen presentation by CD1c was resistant to drugs inhibiting endosomal acidification and was independent of endosomal localization of CD1c. Taken together, these results support the hypothesis that CD1b and CD1c are specialized to survey che lipid content of different intracellular compartments.
Cutting edge: A naturally occurring mutation in CD1e impairs lipid antigen presentation
JOURNAL OF IMMUNOLOGY
Authors: Tourne, Sylvie; Maitre, Blandine; Collmann, Anthony; Layre, Emilie; Mariotti, Sabrina; Signorino-Gelo, Francois; Loch, Caroline; Salamero, Jean; Gilleron, Martine; Angenieux, Catherine; Cazenave, Jean-Pierre; Mori, Lucia; Hanau, Daniel; Puzo, Germain; De Libero, Gennaro; de la Salle, Henri
Abstract
The human CD1a-d proteins are plasma membrane molecules involved in the presentation of lipid Ags to T cells. In contrast, CD1e is an intracellular protein present in a soluble form in late endosomes or lysosomes and is essential for the processing of complex glycolipid Ags such as hexamannosylated phosphatidyl-myo-inositol, PIM(6). CD1e is formed by the association of beta(2)-microglobulin with an a-chain encoded by a polymorphic gene. We report here that one variant of CD1e with a proline at position 194, encoded by allele 4, does not assist PIM6 presentation to CD1b-restricted specific T cells. The immunological incompetence of this CD1e variant is mainly due to inefficient assembly and poor transport of this molecule to late endosomal compartments. Although the allele 4 of CD 1 E is not frequent in the population, our findings suggest that homozygous individuals might display an altered immune response to complex glycolipid Ags.