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Updated: Nov 15, 2025

A GPC3-targeting Bispecific Antibody, GPC3-S-Fab, with Potent Cytotoxicity
Published on: July 12, 2018
Bispecific antibodies targeting mutant RAS neoantigens
Jacqueline Douglass1,2,3, Emily Han-Chung Hsiue1,2,3, Brian J Mog1,2,3,4
1Ludwig Center, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.
Abstract:
Mutations in the RAS oncogenes occur in multiple cancers, and ways to target these mutations has been the subject of intense research for decades. Most of these efforts are focused on conventional small-molecule drugs rather than antibody-based therapies because the RAS proteins are intracellular. Peptides derived from recurrent RAS mutations, G12V and Q61H/L/R, are presented on cancer cells in the context of two common human leukocyte antigen (HLA) alleles, HLA-A3 and HLA-A1, respectively. Using phage display, we isolated single-chain variable fragments (scFvs) specific for each of these mutant peptide-HLA complexes. The scFvs did not recognize the peptides derived from the wild-type form of RAS proteins or other related peptides. We then sought to develop an immunotherapeutic agent that was capable of killing cells presenting very low levels of these RAS-derived peptide-HLA complexes. Among many variations of bispecific antibodies tested, one particular format, the single-chain diabody (scDb), exhibited superior reactivity to cells expressing low levels of neoantigens. We converted the scFvs to this scDb format and demonstrated that they were capable of inducing T cell activation and killing of target cancer cells expressing endogenous levels of the mutant RAS proteins and cognate HLA alleles. CRISPR-mediated alterations of the HLA and RAS genes provided strong genetic evidence for the specificity of the scDbs. Thus, this approach could be applied to other common oncogenic mutations that are difficult to target by conventional means, allowing for more specific anticancer therapeutics.
Insights
Researchers developed novel antibody-based therapies targeting RAS oncogene mutations in cancer. These therapies specifically target mutant RAS peptides presented on cancer cells, offering a new avenue for precise anticancer treatments.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- RAS oncogene mutations are prevalent in many cancers.
- Targeting intracellular RAS proteins with conventional therapies is challenging.
- Antibody-based therapies offer potential for specific cancer targeting.
Purpose of the Study:
- To develop novel immunotherapeutic agents targeting RAS mutations.
- To isolate specific binders to mutant RAS peptide-HLA complexes.
- To create bispecific antibodies for cancer cell killing.
Main Methods:
- Phage display to isolate single-chain variable fragments (scFvs).
- Development of single-chain diabody (scDb) format for enhanced reactivity.
- CRISPR-mediated gene editing to confirm specificity.
Main Results:
- Isolated scFvs specific for mutant RAS peptide-HLA complexes (G12V, Q61H/L/R).
- Developed scDbs that effectively kill cancer cells presenting low neoantigen levels.
- Demonstrated T cell activation and tumor cell killing in vitro.
Conclusions:
- This approach enables targeted killing of cancer cells with specific RAS mutations.
- scDb format shows promise for targeting low neoantigen expression.
- Potential for broader application to other difficult-to-target oncogenic mutations.
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