Target intelligence / Profile preview

MHC class II–restricted CD4+ T cell receptor specific for the H3K27M neoantigen (H3K27M-specific MHC-II TCR)

Target
H3K27M-specific MHC-II TCR
Molecular classification
T-cell receptor, Receptor
01

Overview

MHC class II–restricted CD4+ T cell receptors (TCRs) specific for the H3K27M neoantigen are specialized immune receptors that recognize a specific mutation in histone H3 (lysine 27 to methionine) [1, 2]. This mutation is a hallmark of diffuse midline gliomas (DMG), including diffuse intrinsic pontine glioma (DIPG), which are aggressive and often fatal pediatric brain tumors [1, 3]. These TCRs are restricted by MHC class II molecules, such as HLA-DR and HLA-DQ, and are primarily expressed on CD4+ T cells [1, 2]. Upon recognition of the H3K27M peptide-MHC complex, these receptors trigger T-cell activation, leading to the secretion of pro-inflammatory cytokines like interferon-gamma (IFN-γ) and the orchestration of a comprehensive antitumor immune response [1, 2]. Therapeutic strategies leveraging these TCRs include the development of adoptive TCR-engineered T-cell therapies and the use of long peptide vaccines designed to expand these specific T-cell populations in patients [2, 4]. Clinical evidence suggests that these MHC class II-restricted responses are vital for optimal antitumor immunity and can contribute to significant clinical outcomes, including complete remission in some cases [1, 2].

Other names
H3.3K27M-specific T-cell receptorH3K27M-reactive T-cell receptorMHC-II restricted H3K27M TCRCD4+ H3K27M-specific TCRHistone H3K27M-specific T-cell receptor
02

Mechanism of action

Peptide vaccines target these receptors by inducing their expansion and activation through the presentation of the H3K27M neoantigen on MHC class II molecules by antigen-presenting cells [1, 2]. Adoptive TCR-T cell therapies utilize these receptors to engineer T cells that can directly recognize and respond to H3K27M-mutant tumor cells, triggering a targeted immune attack [2, 3].

03

Biological functions

Immune responseAntigen recognitionCytokine secretionAntitumor immunityT-cell activation
04

Disease associations

CancerDiffuse midline gliomaDiffuse intrinsic pontine gliomaHigh-grade glioma
05

Safety considerations

Potential for off-target toxicity against wild-type histone H3Pseudoprogression in brain tumor patientsNeuroinflammation and cerebral edemaLimited MHC class II expression on glioma cells requiring cross-presentation
06

Interacting drugs

H3.3K27M peptide vaccine (H3vac)

2 more in the full profile.

07

Biomarkers

H3K27M mutation (H3F3A or HIST1H3B)HLA-DRB1*01:01HLA-DRB1*13:02HLA-DQB1*06:03Interferon-gamma (IFN-γ) production

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