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Tumor-specific neoantigen peptides derived from KRAS, TP53, Beta-catenin, and BRAF mutations (KRAS/TP53/CTNNB1/BRAF Neoantigens)

Target
KRAS/TP53/CTNNB1/BRAF Neoantigens
Molecular classification
Antigen, Peptide
01

Overview

Tumor-specific neoantigen peptides derived from mutations in KRAS, TP53, Beta-catenin (CTNNB1), and BRAF represent a class of highly specific therapeutic targets for cancer immunotherapy [PubMed: 31534203]. These peptides arise from somatic hotspot mutations that are common across various malignancies but absent in healthy tissues, providing a high therapeutic index with minimal risk of central tolerance or autoimmunity [Nature: 10.1038/s41591-018-0048-2]. When these mutated proteins are processed by the proteasome, the resulting neoantigenic peptides are presented on the cell surface by Major Histocompatibility Complex (MHC) molecules for recognition by CD8+ and CD4+ T cells [PubMed: 30104371]. Therapeutic strategies, such as mRNA vaccines (e.g., mRNA-5671), peptide vaccines, and adoptive T-cell receptor (TCR) therapies, aim to prime or engineer the immune system to recognize these specific peptide-MHC complexes [NEJM: 10.1056/NEJMoa2119662]. Because these mutations are frequent drivers in colorectal, pancreatic, and lung cancers, targeting these shared neoantigens allows for the development of off-the-shelf immunotherapies for large patient populations [PubMed: 35653551]. However, the efficacy of these treatments is highly dependent on the patient's specific HLA genotype and the tumor's ability to maintain antigen presentation machinery [PubMed: 29074444].

Other names
Shared neoantigensHotspot mutation-derived neoantigensPublic neoantigensMutation-derived tumor antigensKRAS/TP53/CTNNB1/BRAF shared antigens
02

Mechanism of action

Induction of a specific T-cell mediated immune response against tumor cells presenting mutated peptide fragments on MHC molecules.

03

Biological functions

Immune responseAntigen presentationT-cell activationAdaptive immunity
04

Disease associations

CancerColorectal cancerPancreatic cancerNon-small cell lung cancerMelanomaOvarian cancer
05

Safety considerations

Immune evasion via HLA downregulation or loss of heterozygosityCytokine release syndrome (primarily associated with TCR-T cell therapy)Theoretical off-target cross-reactivity with wild-type proteinsInjection site reactions and systemic flu-like symptoms (for vaccines)
06

Interacting drugs

mRNA-5671 (V941)

5 more in the full profile.

07

Biomarkers

KRAS mutation status (e.g., G12D, G12V)TP53 mutation status (e.g., R175H, R273H)BRAF mutation status (e.g., V600E)CTNNB1 mutation status (e.g., S33, S37)HLA typing (MHC restriction)MHC class I/II expression levels

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