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Human endogenous retrovirus-derived tumor antigens presented as peptide-major histocompatibility complexes (HERV-pMHC) (HERV-pMHC)

Target
HERV-pMHC
Molecular classification
Peptide-major histocompatibility complex, Tumor-associated antigen
01

Overview

Human endogenous retrovirus (HERV)-derived tumor antigens are peptides originating from ancient retroviral elements that comprise approximately 8% of the human genome (Lander et al., 2001, Nature). While usually silenced by epigenetic mechanisms in healthy cells, these sequences are frequently reactivated in triple-negative breast cancer (TNBC) due to global DNA hypomethylation (Rooney et al., 2015, Cell). Once translated, HERV proteins are processed into peptides and presented on the cell surface by Major Histocompatibility Complex (MHC) molecules, forming HERV-pMHC complexes. These complexes are recognized as 'non-self' or 'altered-self' by T cells, making them potent targets for immunotherapy (Wang-Johanning et al., 2012, Cancer Research). Current therapeutic strategies include TCR-engineered T cells and vaccines designed to elicit a robust cytotoxic T-cell response against TNBC cells expressing these specific viral remnants (Saini et al., 2020, Science Immunology). Because HERV expression is highly restricted to malignant tissues, these pMHC complexes offer a high degree of tumor specificity, potentially reducing the risk of systemic toxicity compared to traditional chemotherapy. However, the effectiveness of these therapies depends on the stable expression of MHC molecules and the specific HLA alleles of the patient (Garrido et al., 2016, Cancer Immunology, Immunotherapy).

Other names
HERV-derived neoantigensHERV-derived tumor-specific antigensHERV-derived tumor-associated antigensEndogenous retroviral pMHC
02

Mechanism of action

Targeted recognition of HERV-derived peptides in the context of MHC molecules by engineered T-cell receptors or antibodies, inducing cytotoxic T-lymphocyte mediated apoptosis of tumor cells.

03

Biological functions

Antigen presentationImmune recognitionT-cell activation
04

Disease associations

Triple-negative breast cancerCancer
05

Safety considerations

Potential on-target off-tumor toxicity if low-level HERV expression exists in healthy tissuesImmune evasion via MHC downregulationHLA restriction limiting the treatable patient populationCross-reactivity with similar self-peptides
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Interacting drugs

TCR-engineered T-cell therapy

3 more in the full profile.

07

Biomarkers

HERV-K mRNA expressionHLA-A*02:01 statusMHC Class I surface expressionHERV-E expression

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