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Updated: Dec 25, 2025

Ligand Nano-cluster Arrays in a Supported Lipid Bilayer
Published on: April 23, 2017
Structural Dynamics of the Lipid Antigen-Binding Site of CD1d Protein
Bruno Cuevas-Zuviría1, Marina Mínguez-Toral1, Araceli Díaz-Perales1,2
1Centro de Biotecnología y Genómica de Plantas (CBGP, UPM-INIA), Universidad Politécnica de Madrid (UPM)-Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), Campus de Montegancedo-UPM, 28223 Pozuelo de Alarcón (Madrid), Spain.
Insights
This study used molecular dynamics to investigate human CD1d protein dynamics and lipid antigen loading. Findings reveal how CD1d
Area of Science:
- Immunology
- Structural Biology
- Computational Biology
Background:
- CD1 molecules present lipid antigens to T-cells, initiating immune responses.
- Understanding CD1-lipid interactions is crucial, but lipid loading mechanisms remain unclear.
Purpose of the Study:
- To explore the molecular dynamics of human CD1d and its lipid-binding domain.
- To investigate the influence of lipid antigens and pH on CD1d conformation.
- To elucidate the role of the accessory protein GM2AP in lipid loading.
Main Methods:
- Molecular dynamics (MD) simulations were performed on human CD1d.
- Simulations included apo-form, CD1d with lipid antigens, and CD1d with GM2AP.
- Analysis involved property calculations and Poisson-Boltzmann electrostatic potentials at pH 7 and 4.5.
Main Results:
- Dynamic features at the entrance of CD1d's hydrophobic channels were identified, sensitive to lipid type.
- Lipid and pH-dependent conformational changes were observed in unique tryptophans of CD1d.
- The accessory protein GM2AP showed external effects only in its open form, suggesting conformational adaptation.
Conclusions:
- CD1d's dynamics are modulated by lipid antigens and pH, influencing antigen presentation.
- GM2AP's conformational flexibility is key to its function in lipid loading.
- This study provides molecular insights into CD1d-mediated lipid antigen presentation.
Abstract:
CD1 molecules present lipid antigens to T-cells in early stages of immune responses. Whereas CD1‒lipid‒T-cell receptors interactions are reasonably understood, molecular details on initial trafficking and loading of lipids onto CD1 proteins are less complete. We present a molecular dynamics (MD) study of human CD1d, the isotype that activates iNKT cells. MD simulations and calculations of properties and Poisson-Boltzmann electrostatic potentials were used to explore the dynamics of the antigen-binding domain of the apo-form, CD1d complexes with three lipid-antigens that activate iNKT cells and CD1d complex with GM2AP, a protein that assists lipid loading onto CD1 molecules in endosomes/lysosomes. The study was done at pH 7 and 4.5, values representative of strongly acidic environments in endosomal compartments. Our findings revealed dynamic features of the entrance to the hydrophobic channels of CD1d modulated by two α helices with sensitivity to the type of lipid. We also found lipid- and pH-dependent dynamic changes in three exposed tryptophans unique to CD1d among the five human CD1 isotypes. On the basis of modelled structures, our data also revealed external effects produced by the helper protein GM2AP only when it interacts in its open form, thus suggesting that the own assistant protein also adapts conformation to association with CD1d.
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