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A Pipeline to Investigate the Structures and Signaling Pathways of Sphingosine 1-Phosphate Receptors
Published on: June 8, 2022
Sortase A-Cleavable CD1d Identifies Sphingomyelins as Major Class of CD1d-Associated Lipids
Maren Rudolph1,2, Yuting Wang1,2,3, Theresa Simolka1,2
1Department of Medicine I, University Medical Center Dresden, Technische Universität (TU) Dresden, Dresden, Germany.
Insights
We developed a novel method to analyze lipids bound to CD1d molecules, revealing that sphingolipids are preferentially bound. This finding impacts our understanding of natural killer T (NKT) cell activation.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- CD1d is an atypical MHC class I molecule presenting lipid antigens to activate natural killer T (NKT) cells.
- CD1d interacts with lipids in various cellular compartments, but its purification for lipid analysis is challenging.
- Existing methods using detergents disrupt CD1d-lipid complexes, hindering accurate lipidome analysis.
Purpose of the Study:
- To develop a novel method for analyzing CD1d-bound lipids without detergent interference.
- To characterize the lipid species bound to CD1d in mammalian cells.
- To investigate the functional implications of CD1d-associated lipids on NKT cell activation.
Main Methods:
- Developed a Sortase A-dependent enzymatic release system for cell-surface CD1d on live mammalian cells.
- Utilized affinity tagging for single-step CD1d release and subsequent shotgun lipidomics.
- Assessed CD1d trafficking and lipid loading in secretory and endolysosomal pathways.
- Analyzed CD1d-bound lipids and compared them to the total cellular lipidome.
Main Results:
- The novel CD1d release system maintained protein integrity and subcellular trafficking.
- Shotgun lipidomics revealed CD1d preferentially binds long-chain sphingolipids and glycerophospholipids, not a representative sample of the total lipidome.
- Sphingomyelin species, known NKT cell regulators, constituted the majority of endogenous CD1d-associated lipids.
- Inhibition of endolysosomal trafficking did not alter the CD1d-bound lipid spectrum, suggesting primary loading in the secretory pathway.
Conclusions:
- A novel, detergent-free method for analyzing CD1d-bound lipids has been established.
- CD1d exhibits selective lipid binding, with a strong preference for specific sphingolipids.
- These findings provide crucial insights into the regulation of NKT cell activation by CD1d-lipid interactions.
Abstract:
CD1d is an atypical MHC class I molecule which binds endogenous and exogenous lipids and can activate natural killer T (NKT) cells through the presentation of lipid antigens. CD1d surveys different cellular compartments including the secretory and the endolysosomal pathway and broadly binds lipids through its two hydrophobic pockets. Purification of the transmembrane protein CD1d for the analysis of bound lipids is technically challenging as the use of detergents releases CD1d-bound lipids. To address these challenges, we have developed a novel approach based on Sortase A-dependent enzymatic release of CD1d at the cell surface of live mammalian cells, which allows for single step release and affinity tagging of CD1d for shotgun lipidomics. Using this system, we demonstrate that CD1d carrying the Sortase A recognition motif shows unimpaired subcellular trafficking through the secretory and endolysosomal pathway and is able to load lipids in these compartments and present them to NKT cells. Comprehensive shotgun lipidomics demonstrated that the spectrum and abundance of CD1d-associated lipids is not representative of the total cellular lipidome but rather characterized by preferential binding to long chain sphingolipids and glycerophospholipids. As such, sphingomyelin species recently identified as critical negative regulators of NKT cell activation, represented the vast majority of endogenous CD1d-associated lipids. Moreover, we observed that inhibition of endolysosomal trafficking of CD1d surprisingly did not affect the spectrum of CD1d-bound lipids, suggesting that the majority of endogenous CD1d-associated lipids load onto CD1d in the secretory rather than the endolysosomal pathway. In conclusion, we present a novel system for the analysis of CD1d-bound lipids in mammalian cells and provide new insight into the spectrum of CD1d-associated lipids, with important functional implications for NKT cell activation.
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