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T-cell receptor:peptide–major histocompatibility complex complex (TCR:pMHC complex)

Target
TCR:pMHC complex
Molecular classification
Receptor (T-cell receptor, membrane protein), Immune recognition complex, Protein–protein interaction complex, Adaptive immune molecule
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Overview

The T-cell receptor:peptide–major histocompatibility complex complex (TCR:pMHC complex) is a molecular assembly formed when a T-cell receptor (TCR) on the surface of a T lymphocyte binds to a specific antigenic peptide displayed by a major histocompatibility complex (MHC) molecule on an antigen-presenting cell[1][2][3][6]. MHC molecules (known as HLA in humans) present short peptide fragments derived from pathogens, tumours, or self-proteins, and are highly polymorphic to enable broad peptide presentation. The TCR, typically a heterodimer made of α and β chains, recognizes both the peptide and the MHC molecule with fine specificity, launching downstream immune signaling necessary for orchestrating adaptive immune responses[4][6]. The interaction between TCR, peptide, and MHC governs immune recognition, with disease relevance in cancer, infection, autoimmunity, and transplantation. TCR:pMHC specificity is foundational for immunotherapy approaches, notably for TCR-mimic antibodies and engineered TCR therapeutics, but presents challenges due to TCR cross-reactivity and risk of adverse immune effects[1][6].

Other names
TCR:pMHC complexT cell receptor:peptide–MHC complexT-cell receptor:peptide/MHC complexTCR–pMHC complexTCR–pMHC–CD4/CD8 complex
02

Mechanism of action

Targeted immune recognition (engineered TCRs or TCR-mimics bind tumour-specific pMHC)[6] T cell redirection (bispecifics linking TCR-pMHC and CD3 to activate T cells)[6] Immunomodulation via MHC blockade (rare, e.g., blocking peptide–MHC to suppress unwanted T cell activation)

03

Biological functions

Antigen recognitionInitiation of adaptive immune responseT cell activationImmune surveillanceImmune tolerance
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Disease associations

CancerInfectionAutoimmune diseaseImmunodeficiencyTransplant rejectionInflammation
05

Safety considerations

Off-target toxicity (TCR cross-reactivity to self-pMHC)[6][1]Cytokine release syndrome (from TCR-based therapeutics on-target or off-tumour)[6]Alloreactivity (potential immune reaction to non-self MHC complexes)Immune escape through antigen/MHC downregulation
06

Interacting drugs

Tebentafusp (TCR–CD3 bispecific fusion protein, targets TCR-pMHC)[6]

2 more in the full profile.

07

Biomarkers

Tumour-specific pMHC complexes (neoantigen-MHC, cancer peptide-MHC)[6]Clonal TCR signatures (for monitoring response to immunotherapy)[6]HLA typing and peptide/MHC combination (for immune profiling)

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