Molecular basis of mycobacterial lipid antigen presentation by CD1c and its recognition by αβ T cells

Sobhan Roy1, Dalam Ly2, Nan-Sheng Li1

  • 1Departments of Biochemistry and Molecular Biology and.

Insights

Researchers explored how T-cell receptors (TCRs) recognize CD1c proteins presenting mycobacterial antigens. They found specific TCR interactions and identified key protein regions involved in this crucial immune recognition process.

Area of Science:

  • Immunology
  • Structural Biology
  • Biochemistry

Background:

  • CD1c is crucial for presenting lipid antigens, particularly from mycobacteria, to T cells.
  • The molecular mechanisms of T-cell receptor (TCR) recognition of CD1c-lipid complexes remain largely unknown.

Purpose of the Study:

  • To elucidate the structural and functional basis of TCR recognition of CD1c presenting mycobacterial phosphomycoketide antigens.
  • To characterize the binding affinities and identify key interacting residues between TCRs and CD1c-antigen complexes.

Main Methods:

  • X-ray crystallography to determine the structure of CD1c-antigen complexes.
  • Biochemical assays to measure TCR-CD1c binding affinities.
  • Mutagenesis studies of both TCR and CD1c to identify critical recognition residues.

Main Results:

  • Structural analysis revealed how CD1c accommodates mycobacterial phosphomycoketide antigens, noting a distinct phosphate head-group positioning.
  • Six human TCRs demonstrated high to moderate affinity interactions with CD1c-mycoketide complexes.
  • Mutagenesis identified five complementarity-determining region (CDR) loops of the TCR and specific residues on CD1c's α1 and α2 helices as critical for recognition.

Conclusions:

  • TCR recognition of CD1c-lipid antigens is mediated by specific CDR loops and CD1c residues.
  • Unlike MHC class I, CD1c-reactive TCRs do not share a common binding footprint, suggesting diverse recognition modes.

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