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Chimeric Antigen Receptors Directed at Mutant KRAS Exhibit an Inverse Relationship Between Functional Potency and
Talar Tokatlian1, Grace E Asuelime1, Martin S Naradikian1
1Research, A2 Biotherapeutics, Agoura Hills, California.
Abstract:
Neoantigens are among the most intriguing potential immuno-oncology targets because, unlike many cancer targets that are expressed on normal tissues, they are by definition restricted to cancer cells. Medicines directed at common neoantigens such as mutant KRAS are especially interesting because they may offer the convenience and cost of an off-the-shelf therapy. However, all common KRAS mutations produce proteins that differ from the wild type at a single amino acid, creating challenges for molecular discrimination. We have undertaken an effort to optimize single-chain variable fragments (scFv) against peptide/major histocompatibility antigen complexes composed of HLA-A*11 and either G12V- or G12D-mutant KRAS peptides. These scFvs could in principle be used in chimeric antigen receptor (CAR) T-cell therapies for selected patients whose tumors bear either of these mutations. Here we show that optimization of such CARs involves a trade-off between potency and selectivity. We further show that targeting this family without high selectivity engenders risks of cross-reactivity against other members of the G-protein family to which KRAS belongs.
Significance:
We report an effort to generate high potency, selective CARs directed at mutant KRAS peptides. Although the heavily optimized CARs maintain high selectivity against wild-type KRAS, they lose selectivity against other KRAS-related peptides derived from human proteins. To our knowledge, this work is the first to examine the trade-off between potency and selectivity with regard to KRAS pMHC-directed CARs, illustrating the challenge to achieve both sufficient potency and high selectivity.
Insights
Developing chimeric antigen receptor (CAR) T-cell therapies targeting KRAS mutations presents a potency-selectivity trade-off. Optimizing CARs for mutant KRAS requires careful balancing to avoid cross-reactivity with related proteins.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Neoantigens are promising cancer-specific immuno-oncology targets.
- Mutant KRAS proteins are attractive targets for off-the-shelf therapies.
- Single amino acid differences in KRAS mutations pose molecular discrimination challenges.
Purpose of the Study:
- To optimize single-chain variable fragments (scFvs) for chimeric antigen receptor (CAR) T-cell therapies targeting specific KRAS mutations (G12V, G12D).
- To investigate the trade-off between potency and selectivity in KRAS pMHC-directed CARs.
- To assess the risk of cross-reactivity with other G-protein family members.
Main Methods:
- Optimization of scFvs against HLA-A*11/mutant KRAS peptide complexes.
- Development and evaluation of CAR T-cell constructs.
- Assessment of CAR T-cell potency and selectivity against various KRAS peptides and related proteins.
Main Results:
- Optimized CARs demonstrated a trade-off between potency and selectivity.
- High-potency CARs maintained selectivity against wild-type KRAS but lost selectivity against other KRAS-related peptides.
- Targeting KRAS without high selectivity risks cross-reactivity with related G-proteins.
Conclusions:
- Achieving both high potency and high selectivity in KRAS-targeted CAR T-cell therapy is challenging.
- This study highlights the critical need to balance CAR T-cell efficacy and safety.
- Further research is needed to overcome selectivity challenges for KRAS-targeted therapies.
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