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Integrate Imaging Flow Cytometry and Transcriptomic Profiling to Evaluate Altered Endocytic CD1d Trafficking
Published on: October 29, 2018
Increased flexibility and liposome-binding capacity of CD1e at endosomal pH
Natalia Bushmarina1, Sylvie Tourne, Gaëlle Giacometti
1INSERM, UMR-S725, INSERM-Université de Strasbourg, France.
Insights
Acidic conditions in lysosomes enhance lipid antigen binding to CD1e molecules in dendritic cells (DCs). This pH-dependent interaction is crucial for CD1e function in presenting lipid antigens to T cells.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- CD1 proteins present lipid antigens to T cells.
- CD1e is found in Golgi and lysosomes of dendritic cells (DCs).
- The function of CD1e in lysosomes and the effect of pH on its structure and ligand binding are unknown.
Purpose of the Study:
- Investigate the impact of pH changes on CD1e structure and lipid-binding properties.
- Determine how lysosomal pH affects CD1e's interaction with lipid antigens.
- Understand the functional consequences of CD1e processing in lysosomes.
Main Methods:
- Recombinant CD1e expression and purification.
- Circular dichroism spectroscopy to assess protein structure.
- Guanidinium chloride-induced unfolding assays.
- Binding studies with hydrophobic fluorescent probes (8-anilinonaphthalene-1-sulfonate).
- Lipid-binding assays using anionic lipids.
Main Results:
- CD1e structure is largely stable across pH changes, but unfolding is easier at acidic pH.
- The nonfunctional L194P variant is less stable at acidic pH.
- Acidic pH increases exposed hydrophobic patches on CD1e.
- CD1e binds anionic lipids, particularly at acidic pH and with the propeptide present.
- Lysosomal lipid bis(monoacylglycero)phosphate enhances CD1e binding at acidic pH.
Conclusions:
- Acidic pH in late endosomes/lysosomes of DCs promotes lipid antigen binding to CD1e.
- Increased hydrophobic and ionic interactions at acidic pH facilitate CD1e-lipid antigen complex formation.
- These findings elucidate a key mechanism for CD1e-mediated lipid antigen presentation in the immune system.
Abstract:
The plasma membrane proteins CD1a, CD1b and CD1c are expressed by human dendritic cells, the professional antigen-presenting cells of the immune system, and present lipid antigens to T lymphocytes. CD1e belongs to the same family of molecules, but accumulates as a membrane-associated form in the Golgi compartments of immature dendritic cells and as a soluble cleaved form in the lysosomes of mature dendritic cells. In lysosomes, the N-terminal propeptide of CD1e is also cleaved, but the functional consequences of this step are unknown. Here, we investigated how the pH changes encountered during transport to lysosomes affect the structure of CD1e and its ligand-binding properties. Circular dichroism studies demonstrated that the secondary and tertiary structures of recombinant CD1e were barely altered by pH changes. Nevertheless, at acidic pH, guanidium chloride-induced unfolding of CD1e molecules required lower concentrations of denaturing agent. The nonfunctional L194P allelic variant was found to be structurally less stable at acidic pH than the functional forms, providing an explanation for the lack of its detection in lysosomes. The number of water-exposed hydrophobic patches that bind 8-anilinonaphthalene-1-sulfonate was higher in acidic conditions, especially for the L194P variant. CD1e molecules interacted with lipid surfaces enriched in anionic lipids, such as bis(monoacylglycero)phosphate, a late endosomal/lysosomal lipid, especially at acidic pH, or when the propeptide was present. Altogether, these data indicate that, in the late endosomes/lysosomes of DCs, the acid pH promotes the binding of lipid antigens to CD1e through increased hydrophobic and ionic interactions.
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