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Hervas-Stubbs, S.

Publications and source records attributed to Hervas-Stubbs, S..

2 recordsLinked to original sources

Structure-function profiling identifies determinants of TCR-T cell therapeutic efficacy

Glypican-3 (GPC3) is a promising target in adoptive T-cell therapy for hepatocellular carcinoma (HCC). TCR-A and TCR-B are two recently identified GPC3-specific TCRs recognizing the same HLA-A*02:01-restricted epitope but displaying markedly different therapeutic efficacy. To define the determinants of productive TCR-antigen recognition, we integrated high-resolution structures of both binary pMHC and ternary TCR:pMHC complexes, biolayer interferometry, peptide mutagenesis, target-cell conjugation assays, repetitive antigen challenge (RAC) and in vivo models. Structurally, conformational permissiveness of the immunodominant GPC3(522-530) peptide within HLA-A*02:01's groove is central for productive TCR docking, with TCR-B presenting slower association but prolonged dwell time. Functional divergence emerged during target-cell engagement and amplified under RAC conditions, where TCR-B sustained cytotoxic activity while TCR-A progressively lost function. This superior functional endurance translated into complete tumor eradication and durable responses in vivo. These findings provide a mechanistic basis and a conceptual framework for the selection and optimization of TCRs for adoptive immunotherapy.

immunology↗

Robust TCR production for the structural study of TCR-pMHC complexes

A precise comprehension of how T cell receptors (TCRs) engage their antigens is pivotal for advancing basic research and T cell immunotherapy in cancer. While TCR refolding from inclusion bodies has greatly facilitated X-ray studies over the past decades, the procedures remain labor-intensive and can yield poorly. We have developed a simplified strategy for efficient production of soluble TCRs in CHO cells which, coupled with the removal of N-glycosylation, enable structural studies of TCR-pMHC complexes. An equivalent of just 20 ml of cell culture delivered sufficient deglycosylated TCR (dgTCR) to screen, upon complexation with a cognate pMHC, over 350 crystallization conditions and obtain a high-resolution dataset. This approach illustrates an effective alternative for TCR production to support studies devoted to research and development of TCRs.

immunology↗