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Author Spotlight: Dendritic Cells Maturation Using Sialidases-Based Enzymatic Treatment of the Cell Surface
Published on: October 20, 2023
Lysosomal processing of sulfatide analogs alters target NKT cell specificity and immune responses in cancer
Kumiko Nishio1, Lise Pasquet1, Kaddy Camara2
1Vaccine Branch, Center for Cancer Research, National Cancer Institute (NCI), NIH, Bethesda, Maryland, USA.
Abstract:
In a structure-function study of sulfatides that typically stimulate type II NKT cells, we made an unexpected discovery. We compared analogs with sphingosine or phytosphingosine chains and 24-carbon acyl chains with 0-1-2 double bonds (C or pC24:0, 24:1, or 24:2). C24:1 and C24:2 sulfatide presented by the CD1d monomer on plastic stimulated type II, not type I, NKT cell hybridomas, as expected. Unexpectedly, when presented by bone marrow-derived DCs (BMDCs), C24:2 reversed specificity to stimulate type I, not type II, NKT cell hybridomas, mimicking the corresponding β-galactosylceramide (βGalCer) without sulfate. C24:2 induced IFN-γ-dependent immunoprotection against CT26 colon cancer lung metastases, skewed the cytokine profile, and activated conventional DC subset 1 cells (cDC1s). This was abrogated by blocking lysosomal processing with bafilomycin A1, or by sulfite blocking of arylsulfatase or deletion of this enyzme that cleaves off sulfate. Thus, C24:2 was unexpectedly processed in BMDCs from a type II to a type I NKT cell-stimulating ligand, promoting tumor immunity. We believe this is the first discovery showing that antigen processing of glycosylceramides alters the specificity for the target cell, reversing the glycolipid's function from stimulating type II NKT cells to stimulating type I NKT cells, thereby introducing protective functional activity in cancer. We also believe our study uncovers a new role for antigen processing that does not involve MHC loading but rather alteration of which type of cell is responding.
Insights
Unexpected antigen processing of sulfatides by dendritic cells (DCs) switched their immune cell specificity from type II to type I NKT cells, enhancing anti-cancer immunity.
Area of Science:
- Immunology
- Glycolipid Metabolism
- Cancer Research
Background:
- Sulfatides typically activate type II NKT cells.
- Structure-function studies investigate glycolipid analogs.
Purpose of the Study:
- To investigate how antigen processing affects sulfatide specificity.
- To explore the potential of manipulating NKT cell responses for cancer immunotherapy.
Main Methods:
- Compared sulfatide analogs with varying acyl chains.
- Utilized bone marrow-derived dendritic cells (BMDCs) for antigen presentation.
- Assessed NKT cell hybridoma stimulation and in vivo anti-tumor immunity.
Main Results:
- C24:2 sulfatide presented by BMDCs unexpectedly stimulated type I NKT cells, unlike when presented on plastic.
- This switch in specificity promoted IFN-γ-dependent anti-tumor immunity against colon cancer lung metastases.
- Lysosomal processing and arylsulfatase activity were crucial for this functional reversal.
Conclusions:
- Antigen processing of glycosylceramides can alter NKT cell specificity, reversing function.
- This study reveals a novel role for antigen processing in directing immune cell responses beyond MHC loading.
- Manipulating glycolipid processing offers a new strategy for cancer immunotherapy by redirecting NKT cell activity.
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