Target intelligence / Profile preview

Human leukocyte antigen A*02 peptide-binding groove (HLA-A*02)

Target
HLA-A*02
Molecular classification
Major histocompatibility complex class I, Receptor, Antigen-presenting molecule
01

Overview

The HLA-A*02 peptide-binding groove is a critical structural feature of the Human Leukocyte Antigen A*02 molecule, which belongs to the Major Histocompatibility Complex (MHC) class I family. This groove is responsible for capturing and presenting short intracellular peptides to the T-cell receptors of CD8+ cytotoxic T lymphocytes, a process essential for immune surveillance against pathogens and malignancies [1.1.1, 1.3.1]. The groove's architecture, defined by its polymorphic amino acid residues, determines the specific 'motif' of peptides it can bind, typically 8-11 amino acids in length [1.2.2, 1.3.1]. In therapeutic contexts, the HLA-A*02 peptide-binding groove is a major target for cancer immunotherapies, including bispecific T-cell engagers like tebentafusp, which bind the groove when it presents specific tumor antigens such as gp100 [1.4.3]. It is also the focus of peptide-based vaccines and adoptive cell therapies that utilize engineered TCRs to recognize specific peptide-HLA complexes [1.4.4, 1.5.1]. Challenges in targeting this site include the high degree of HLA polymorphism across populations and the potential for severe immune-related adverse effects, such as cytokine release syndrome or off-target recognition of healthy tissues [1.4.3, 1.5.3].

Other names
HLA-A2 peptide-binding cleftMHC class I antigen-binding grooveHLA-A*02:01 binding pocketAntigen-binding groove of HLA-A*02
02

Mechanism of action

The primary mechanism of action for drugs targeting the HLA-A*02 peptide-binding groove involves the recognition of specific peptide-HLA (pHLA) complexes by engineered T-cell receptors (TCRs) or TCR-mimetic antibodies, which then recruit and activate T cells to destroy target cells. Peptide vaccines work by supplying exogenous immunogenic peptides that occupy the groove to stimulate a specific immune response. Additionally, experimental small molecules can bind within the groove to alter the repertoire of presented peptides or block the presentation of specific antigens.

03

Biological functions

Antigen presentationImmune responseT-cell activationImmune surveillance
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Disease associations

CancerInfectionAutoimmune diseaseTransplant rejection
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Safety considerations

Cytokine release syndromeOff-target toxicity due to cross-reactivity with self-peptidesEthnic disparity in treatment eligibility due to allele frequency
06

Interacting drugs

Tebentafusp

4 more in the full profile.

07

Biomarkers

HLA-A*02:01 genotypeTarget antigen expression (e.g., gp100, MAGE-A4, NY-ESO-1)

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