Local changes in lipid environment of TCR microclusters regulate membrane binding by the CD3ε cytoplasmic domain

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Abstract

The CD3ε and ζ cytoplasmic domains of the T cell receptor bind to the inner leaflet of the plasma membrane (PM), and a previous nuclear magnetic resonance structure showed that both tyrosines of the CD3ε immunoreceptor tyrosine-based activation motif partition into the bilayer.Electrostatic interactions between acidic phospholipids and clusters of basic CD3ε residues were previously shown to be essential for CD3ε and ζ membrane binding. Phosphatidylserine(PS) is the most abundant negatively charged lipid on the inner leaflet of the PM and makes a major contribution to membrane binding by the CD3ε cytoplasmic domain. Here, we show that TCR triggering by peptide-MHC complexes induces dissociation of the CD3ε cytoplasmic domain from the plasma membrane. Release of the CD3ε cytoplasmic domain from the membrane is accompanied by a substantial focal reduction in negative charge and available PS in TCR microclusters. These changes in the lipid composition of TCR microclusters even occur when TCR signaling is blocked with a Srckinase inhibitor. Local changes in the lipid composition of TCR microclusters thus render the CD3ε cytoplasmic domain accessible during early stages of T cell activation. © 2012 Gagnon et al.

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Gagnon, E., Schubert, D. A., Gordo, S., Chu, H. H., & Wucherpfennig, K. W. (2012). Local changes in lipid environment of TCR microclusters regulate membrane binding by the CD3ε cytoplasmic domain. Journal of Experimental Medicine, 209(13), 2423–2439. https://doi.org/10.1084/jem.20120790

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