Target intelligence / Profile preview

Ovalbumin-derived peptide-Major Histocompatibility Complex (OVA-pMHC) (OVA-pMHC)

Target
OVA-pMHC
Molecular classification
Antigen-MHC complex, Protein-peptide complex, Receptor-ligand complex
01

Overview

The Ovalbumin-derived peptide-Major Histocompatibility Complex (OVA-pMHC) is a fundamental model system in immunology used to study the mechanisms of antigen recognition and T-cell activation. It consists of specific proteolytic fragments of chicken egg ovalbumin, most notably the SIINFEKL epitope (OVA 257-264), bound to MHC Class I or Class II molecules (Rotzschke et al., 1991, Nature). These complexes are specifically recognized by the T-cell receptors (TCRs) of OVA-specific T cells, such as those from the OT-I (CD8+) and OT-II (CD4+) transgenic mouse lines (Hogquist et al., 1994, Cell). In biological systems, the formation of these complexes is the result of intracellular antigen processing and presentation, serving as a critical signal for the adaptive immune system to identify foreign proteins. While not a direct therapeutic target in humans for most systemic diseases, OVA-pMHC is a primary target in the study of egg allergy, where it triggers IgE-mediated hypersensitivity and anaphylaxis (Mine and Yang, 2008, J. Agric. Food Chem.). In oncology and vaccine research, it serves as a surrogate tumor-associated antigen to evaluate the efficacy of novel immunotherapies, including cancer vaccines, adoptive T-cell transfers, and immune checkpoint inhibitors. Experimental agents interacting with this target include TCR-like antibodies, such as the 25-D1.1 clone, which can detect the SIINFEKL-H-2Kb complex with high specificity for research and diagnostic purposes (Porgador et al., 1997, Immunity). The system remains a gold standard for tracking immune responses with high precision using MHC tetramer technology and flow cytometry.

Other names
SIINFEKL-H-2Kb complexOVA 257-264 peptideOVA 323-339 peptideOvalbumin antigen-MHC complexOVA-specific T-cell ligand
02

Mechanism of action

The complex acts as a specific ligand for T-cell receptors (TCRs), where the binding of the peptide-MHC complex to the TCR-CD3 complex triggers intracellular signaling cascades, including ZAP-70 activation and calcium flux, leading to T-cell proliferation, cytokine production, and effector functions (Murphy and Weaver, 2016, Janeway's Immunobiology).

03

Biological functions

Antigen presentationT-cell activationImmune responseImmune toleranceSignal transduction
04

Disease associations

AllergyCancer (preclinical model)Infection (preclinical model)
05

Safety considerations

Anaphylaxis in sensitized individuals (Mine and Yang, 2008, J. Agric. Food Chem.)Hypersensitivity reactionsRisk of cytokine release syndrome in high-affinity TCR modelsInduction of immunological tolerance in the absence of costimulation
06

Interacting drugs

OT-I T-cell receptor (experimental)

4 more in the full profile.

07

Biomarkers

MHC-peptide tetramers (e.g., SIINFEKL-H-2Kb tetramer)IFN-gamma production (ELISpot)CD8+ T-cell expansionCD69 expression

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