Structural characterization of two full length γδTCR/CD3 complexes
The T-cell receptor (TCR)/CD3 complex plays an essential role in the immune response and is a key player in cancer immunotherapies. There are two classes of TCR/CD3 complexes, defined by their TCR chain usage ({beta} or {gamma}{delta}). Recently reported structures have revealed the organization of the {beta} TCR/CD3 complex, but similar studies regarding the {gamma}{delta} TCR/CD3 complex have lagged behind. Here, we report cryoelectron microscopy (cryoEM) structural analysis of two full-length {gamma}{delta} TCRs, G115 (V{gamma}9V{delta}2) and 9C2 (V{gamma}5V{delta}1), in complex with CD3 subunits. Our results show that the overall subunit organization of the {gamma}{delta} TCR-CD3 complexes is similar to {beta} TCRs. However, both {gamma}{delta} TCRs display highly mobile extracellular domains (ECDs), unlike {beta} TCRs, which have TCR ECDs that are rigidly coupled to its transmembrane (TM) domains. We corroborate this finding in cells by demonstrating that a {gamma}{delta} T-cell specific antibody can bind a site that would be inaccessible in the more rigid {beta} TCR/CD3 complex. Furthermore, we observed that a V{gamma}5V{delta}1 complex forms a TCR {gamma}5-chain mediated dimeric species whereby two TCR/CD3 complexes are assembled. Collectively, these data shed light on {gamma}{delta} TCR/CD3 complex formation and may aid the design of {gamma}{delta} TCR-based therapies.