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.

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