4.8 Article

Isolation of a Structural Mechanism for Uncoupling T Cell Receptor Signaling from Peptide-MHC Binding

期刊

CELL
卷 174, 期 3, 页码 672-+

出版社

CELL PRESS
DOI: 10.1016/j.cell.2018.06.017

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资金

  1. NIH [5 T32 AI07290, F31 CA216926-01, U19 AI57229, R01 AI103867, R01AI096879, R01 NS071518, PO1 A1091580]
  2. NIH (NCI) [1U54 CA199090-01]
  3. HHMI
  4. NSF (GRFP)
  5. NSF (EFRI-ODISSEI) [1332411]
  6. Wellcome Trust [WT101609MA]
  7. Parker Institute for Cancer Immunotherapy
  8. Jean Perkins Foundation
  9. NIH
  10. NIGMS
  11. Department of Energy Office of Science User Facility [DE-AC02-05CH11231]
  12. U.S. DOE, Office of Science, Office of Basic Energy Sciences [DE-AC02-76SF00515]
  13. DOE Office of Biological and Environmental Research
  14. NIGMS [P41GM103393]
  15. NSF [331 ACI-1548562]

向作者/读者索取更多资源

TCR-signaling strength generally correlates with peptide-MHC binding affinity; however, exceptions exist. We find high-affinity, yet non-stimulatory, interactions occur with high frequency in the human T cell repertoire. Here, we studied human TCRs that are refractory to activation by pMHC ligands despite robust binding. Analysis of 3D affinity, 2D dwell time, and crystal structures of stimulatory versus non-stimulatory TCR-pMHC interactions failed to account for their different signaling outcomes. Using yeast pMHC display, we identified peptide agonists of a formerly non-responsive TCR. Single-molecule force measurements demonstrated the emergence of catch bonds in the activating TCR-pMHC interactions, correlating with exclusion of CD45 from the TCR-APC contact site. Molecular dynamics simulations of TCR-pMHC disengagement distinguished agonist from non-agonist ligands based on the acquisition of catch bonds within the TCR-pMHC interface. The isolation of catch bonds as a parameter mediating the coupling of TCR binding and signaling has important implications for TCR and antigen engineering for immunotherapy.

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