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Improving T Cell Receptor On-Target Specificity via Structure-Guided Design

  • Lance M. Hellman
  • , Kendra C. Foley
  • , Nishant K. Singh
  • , Jesus A. Alonso
  • , Timothy P. Riley
  • , Jason R. Devlin
  • , Cory M. Ayres
  • , Grant L.J. Keller
  • , Yuting Zhang
  • , Craig W. Vander Kooi
  • , Michael I. Nishimura
  • , Brian M. Baker

Producción científica: Articlerevisión exhaustiva

51 Citas (Scopus)

Resumen

T cell receptors (TCRs) have emerged as a new class of immunological therapeutics. However, though antigen specificity is a hallmark of adaptive immunity, TCRs themselves do not possess the high specificity of monoclonal antibodies. Although a necessary function of T cell biology, the resulting cross-reactivity presents a significant challenge for TCR-based therapeutic development, as it creates the potential for off-target recognition and immune toxicity. Efforts to enhance TCR specificity by mimicking the antibody maturation process and enhancing affinity can inadvertently exacerbate TCR cross-reactivity. Here we demonstrate this concern by showing that even peptide-targeted mutations in the TCR can introduce new reactivities against peptides that bear similarity to the original target. To counteract this, we explored a novel structure-guided approach for enhancing TCR specificity independent of affinity. Tested with the MART-1-specific TCR DMF5, our approach had a small but discernible impact on cross-reactivity toward MART-1 homologs yet was able to eliminate DMF5 cross-recognition of more divergent, unrelated epitopes. Our study provides a proof of principle for the use of advanced structure-guided design techniques for improving TCR specificity, and it suggests new ways forward for enhancing TCRs for therapeutic use.

Idioma originalEnglish
Páginas (desde-hasta)300-313
Número de páginas14
PublicaciónMolecular Therapy
Volumen27
N.º2
DOI
EstadoPublished - feb 6 2019

Nota bibliográfica

Publisher Copyright:
© 2018 The American Society of Gene and Cell Therapy

Financiación

This work was supported by NIH grants R01 AI29543 (B.M.B. and M.I.N.), P01 CA154778 (M.I.N.), and R35 GM118166 (B.M.B.) and American Cancer Society grant IRG-14-195-01 (L.M.H.). T.P.R., J.R.D., and J.A.A. were supported by fellowships from the Indiana CTSI , funded in part by NIH grants TR001107 and TR001108 .

FinanciadoresNúmero del financiador
Indiana CTSI
L.M.H.
National Institutes of Health (NIH)P01 CA154778, TR001108, R35 GM118166, R01 AI29543
National Institutes of Health (NIH)
American Cancer Society-Michigan Cancer Research FundIRG-14-195-01
American Cancer Society-Michigan Cancer Research Fund
National Center for Advancing Translational Sciences (NCATS)TL1TR001107
National Center for Advancing Translational Sciences (NCATS)

    ASJC Scopus subject areas

    • Molecular Medicine
    • Molecular Biology
    • Genetics
    • Pharmacology
    • Drug Discovery

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