Cloned dendritic cells can present exogenous antigens on both MHC class I and class II molecules

Pathways for presenting proteins from the extracellular fluids on MHC class I molecules have been described in macrophages. However, it is uncertain whether similar mechanisms exist in dendritic cells, because conventional preparations of these cells can be contaminated with macrophages. We addresse...

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Veröffentlicht in:The Journal of immunology (1950) 1997-03, Vol.158 (6), p.2723-2730
Hauptverfasser: Shen, Z, Reznikoff, G, Dranoff, G, Rock, KL
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container_title The Journal of immunology (1950)
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creator Shen, Z
Reznikoff, G
Dranoff, G
Rock, KL
description Pathways for presenting proteins from the extracellular fluids on MHC class I molecules have been described in macrophages. However, it is uncertain whether similar mechanisms exist in dendritic cells, because conventional preparations of these cells can be contaminated with macrophages. We addressed this issue by transducing granulocyte-macrophage CSF into bone marrow cultures followed by supertransfection with myc and raf oncogenes. These immortalized clones displayed dendritic morphology, and many expressed the dendritic cell-specific markers DEC-205 and 33D1 as well as high levels of MHC molecules and costimulatory molecules. Using these cloned dendritic cells, we found that exogenous OVA could be presented on both their MHC class I and class II molecules. This presentation was markedly enhanced when the Ag was particulate and internalized by phagocytosis. Presentation of particulate OVA on MHC class I molecules was insensitive to the weak base chloroquine, but was blocked by peptide aldehyde inhibitors of the proteasome, indicating that the class I-presented peptides were generated in the cytosol. Brefeldin A, which inhibits the exocytosis of newly synthesized proteins from the endoplasmic reticulum, also inhibited Ag presentation. These results establish that dendritic cells can present exogenous Ags on MHC class I molecules and appear to use a similar phagosome to cytosol pathway as macrophages. Therefore, dendritic cells are likely to play an important role in generating immune responses to tissue transplants and tumors in vivo. Furthermore, these findings provide an approach for targeting vaccine Ags into these cells to prime immune responses in vivo.
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Brefeldin A, which inhibits the exocytosis of newly synthesized proteins from the endoplasmic reticulum, also inhibited Ag presentation. These results establish that dendritic cells can present exogenous Ags on MHC class I molecules and appear to use a similar phagosome to cytosol pathway as macrophages. Therefore, dendritic cells are likely to play an important role in generating immune responses to tissue transplants and tumors in vivo. 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subjects Animals
Antigen Presentation - drug effects
Antigens, Surface - chemistry
Bone Marrow Cells
Brefeldin A
Cell Line
Cell Separation
Chloroquine - pharmacology
Clone Cells
Cyclopentanes - pharmacology
Cysteine Endopeptidases - physiology
Cytochalasin B - pharmacology
Dendritic Cells - cytology
Dendritic Cells - immunology
Dendritic Cells - metabolism
Histocompatibility Antigens Class I - drug effects
Histocompatibility Antigens Class I - metabolism
Histocompatibility Antigens Class II - drug effects
Histocompatibility Antigens Class II - metabolism
Mice
Mice, Inbred C57BL
Multienzyme Complexes - physiology
Ovalbumin - drug effects
Ovalbumin - immunology
Particle Size
Phagocytosis
Proteasome Endopeptidase Complex
title Cloned dendritic cells can present exogenous antigens on both MHC class I and class II molecules
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