Therapeutic high affinity T cell receptor targeting a KRASG12D cancer neoantigen

Author:

Poole AndrewORCID,Karuppiah VijaykumarORCID,Hartt AnnabelleORCID,Haidar Jaafar N.,Moureau Sylvie,Dobrzycki TomaszORCID,Hayes Conor,Rowley Christopher,Dias Jorge,Harper Stephen,Barnbrook KeirORCID,Hock Miriam,Coles Charlotte,Yang Wei,Aleksic Milos,Lin Aimee Bence,Robinson Ross,Dukes Joe D.,Liddy Nathaniel,Van der Kamp MarcORCID,Plowman Gregory D.ORCID,Vuidepot Annelise,Cole David K.,Whale Andrew D.ORCID,Chillakuri ChandramouliORCID

Abstract

AbstractNeoantigens derived from somatic mutations are specific to cancer cells and are ideal targets for cancer immunotherapy. KRAS is the most frequently mutated oncogene and drives the pathogenesis of several cancers. Here we show the identification and development of an affinity-enhanced T cell receptor (TCR) that recognizes a peptide derived from the most common KRAS mutant, KRASG12D, presented in the context of HLA-A*11:01. The affinity of the engineered TCR is increased by over one million-fold yet fully able to distinguish KRASG12D over KRASWT. While crystal structures reveal few discernible differences in TCR interactions with KRASWT versus KRASG12D, thermodynamic analysis and molecular dynamics simulations reveal that TCR specificity is driven by differences in indirect electrostatic interactions. The affinity enhanced TCR, fused to a humanized anti-CD3 scFv, enables selective killing of cancer cells expressing KRASG12D. Our work thus reveals a molecular mechanism that drives TCR selectivity and describes a soluble bispecific molecule with therapeutic potential against cancers harboring a common shared neoantigen.

Funder

RCUK | Engineering and Physical Sciences Research Council

RCUK | Biotechnology and Biological Sciences Research Council

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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