In silico identification and characterization of small molecule binding to the CD1d immunoreceptor

Prashanth Rathakrishnan1, Andrew C McShan1

  • 1School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA, USA.

Insights

This study reveals CD1d can present diverse small molecules, not just lipids, to T cells. Computational analysis identified new potential CD1d antigens, expanding its known immune surveillance role.

Area of Science:

  • Immunology
  • Structural Biology
  • Computational Chemistry

Background:

  • CD1 immunoreceptors present antigens to T cells, primarily lipids.
  • Recent findings show CD1d can be activated by non-lipidic small molecules like PPBF.
  • Structural data on small molecule/CD1d interactions are limited, hindering understanding of antigen presentation mechanisms.

Purpose of the Study:

  • To structurally characterize small molecule interactions with CD1d using computational methods.
  • To investigate if CD1d presents small molecules similarly to lipids.
  • To explore CD1d's potential to present a broader range of metabolites beyond lipids.

Main Methods:

  • In silico docking and molecular dynamics simulations were employed.
  • Virtual screening of over 17,000 small molecules against CD1d was performed.
  • Protein-ligand interaction profiling was conducted to identify binding patterns.

Main Results:

  • PPBF is proposed to bind to the CD1d F' pocket for T cell receptor presentation.
  • Novel candidate CD1d antigens were identified, including phytosterols, cholesterols, triterpenes, and carbazole alkaloids.
  • Conserved residues in the CD1d F' pocket were found to anchor both small molecules and lipids.

Conclusions:

  • CD1d possesses the intrinsic ability to bind and present a wide array of small molecule metabolites.
  • This suggests CD1d's function extends beyond lipid antigen presentation, potentially analogous to MR1.
  • The findings broaden the scope of known CD1d-mediated immune responses.