CD1b Tetramers Identify T Cells that Recognize Natural and Synthetic Diacylated Sulfoglycolipids from Mycobacterium tuberculosis
Publication date
2018-04
Authors
James, Charlotte A
Yu, Krystle K Q
Gilleron, Martine
Prandi, Jacques
Yedulla, Vijayendar R
Moleda, Zuzanna Z
Diamanti, Eleonora
Khan, Momin
Aggarwal, Varinder K
Reijneveld, Josephine F
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Advisors
Supervisors
Document Type
Article
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taverne
Abstract
Mycobacterial cell wall lipids bind the conserved CD1 family of antigen-presenting molecules and activate T cells via their T cell receptors (TCRs). Sulfoglycolipids (SGLs) are uniquely synthesized by Mycobacterium tuberculosis, but tools to study SGL-specific T cells in humans are lacking. We designed a novel hybrid synthesis of a naturally occurring SGL, generated CD1b tetramers loaded with natural or synthetic SGL analogs, and studied the molecular requirements for TCR binding and T cell activation. Two T cell lines derived using natural SGLs are activated by synthetic analogs independently of lipid chain length and hydroxylation, but differentially by saturation status. By contrast, two T cell lines derived using an unsaturated SGL synthetic analog were not activated by the natural antigen. Our data provide a bioequivalence hierarchy of synthetic SGL analogs and SGL-loaded CD1b tetramers. These reagents can now be applied to large-scale translational studies investigating the diagnostic potential of SGL-specific T cell responses or SGL-based vaccines.
Keywords
Journal Article, Taverne, SDG 3 - Good Health and Well-being
Citation
James, C A, Yu, K K Q, Gilleron, M, Prandi, J, Yedulla, V R, Moleda, Z Z, Diamanti, E, Khan, M, Aggarwal, V K, Reijneveld, J F, Reinink, P, Lenz, S, Emerson, R O, Scriba, T J, Souter, M N T, Godfrey, D I, Pellicci, D G, Moody, D B, Minnaard, A J, Seshadri, C & Van Rhijn, I 2018, 'CD1b Tetramers Identify T Cells that Recognize Natural and Synthetic Diacylated Sulfoglycolipids from Mycobacterium tuberculosis', Cell Chemical Biology, vol. 25, no. 4, pp. 392-402.e14. https://doi.org/10.1016/j.chembiol.2018.01.006