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Vγ9Vδ2 T cells recognize butyrophilin 2A1 and 3A1 heteromers

  • Thomas S. Fulford,
  • Caroline Soliman,
  • Rebecca G. Castle,
  • Marc Rigau,
  • Zheng Ruan,
  • Olan Dolezal,
  • Rebecca Seneviratna,
  • Hamish G. Brown,
  • Eric Hanssen,
  • Andrew Hammet,
  • Shihan Li,
  • Samuel J. Redmond,
  • Amy Chung,
  • Michael A. Gorman,
  • Michael W. Parker,
  • Onisha Patel,
  • Thomas S. Peat,
  • Janet Newman,
  • Andreas Behren,
  • Nicholas A. Gherardin,
  • Dale I. Godfrey,
  • Adam P. Uldrich

摘要

Butyrophilin (BTN) molecules are emerging as key regulators of T cell immunity; however, how they trigger cell-mediated responses is poorly understood. Here, the crystal structure of a gamma-delta T cell antigen receptor (γδTCR) in complex with BTN2A1 revealed that BTN2A1 engages the side of the γδTCR, leaving the apical TCR surface bioavailable. We reveal that a second γδTCR ligand co-engages γδTCR via binding to this accessible apical surface in a BTN3A1-dependent manner. BTN2A1 and BTN3A1 also directly interact with each other in cis, and structural analysis revealed formation of W-shaped heteromeric multimers. This BTN2A1–BTN3A1 interaction involved the same epitopes that BTN2A1 and BTN3A1 each use to mediate the γδTCR interaction; indeed, locking BTN2A1 and BTN3A1 together abrogated their interaction with γδTCR, supporting a model wherein the two γδTCR ligand-binding sites depend on accessibility to cryptic BTN epitopes. Our findings reveal a new paradigm in immune activation, whereby γδTCRs sense dual epitopes on BTN complexes.