Target intelligence / Profile preview

Human leukocyte antigen C alpha chain (HLA-C)

Target
HLA-C
Molecular classification
MHC class I molecule, Receptor, Cell surface glycoprotein, Heterodimer (with beta-2 microglobulin), Immune checkpoint molecule
01

Overview

Human leukocyte antigen C alpha chain (HLA-C) is a glycoprotein encoded within the major histocompatibility complex (MHC) on chromosome 6[1][4][6][8]. It forms a cell surface heterodimer with beta-2 microglobulin and is expressed on nearly all nucleated cells[3][4][6]. HLA-C presents short intracellular peptides (typically 8–10 amino acids) to cytotoxic T lymphocytes, enabling immune recognition and destruction of infected or aberrant cells[4][5][8]. Its unique feature among HLA class I molecules is acting as a ligand for killer-cell immunoglobulin-like receptors (KIRs) on natural killer cells, critically regulating innate immunity and shaping tolerance or cytotoxic responses[1][2][8]. HLA-C exhibits notable polymorphism, affecting disease susceptibility, transplantation compatibility, and immune control of cancer and infections[1][8]. Its expression and peptide-binding properties are highly allele-specific and subject to epigenetic regulation, which can result in immune evasion by tumors or viruses, and influence therapeutic efficacy and safety[1][5][8].

Other names
HLA-CHLACHLA-CwHuman leukocyte antigen CD6S204HLA-JY3HLA class I histocompatibility antigen, C alpha chainHLA-C antigenMHC class I antigen heavy chain HLA-Chuman leukocyte antigen-C alpha chainmajor histocompatibility antigen HLA-CPSORS1
02

Mechanism of action

Immune modulation via alteration of HLA-C/KIR interactions, affecting NK cell activation or inhibition. Modulation of antigen presentation to cytotoxic T cells for immunotherapy or tolerance induction.

03

Biological functions

Presentation of intracellular peptide antigens to cytotoxic T lymphocytes (CD8+ T cells)Ligand for killer-cell immunoglobulin-like receptors (KIR) on natural killer (NK) cellsRegulation of NK cell development and cytotoxicityModulation of immune responses to viral and bacterial infectionRegulation of graft acceptance/rejection, and transplant compatibilityContribution to immune tolerance; helps prevent autoimmunity
04

Disease associations

Cancer (role in immune surveillance, therapy, and relapse risk for leukemias)Autoimmune diseases (psoriasis, alopecia areata)Viral infections (HIV, CMV, hepatitis, etc.)Organ/tissue transplantation (compatibility and rejection)Preeclampsia in pregnancyInflammatory and rheumatic diseasesInfection
05

Safety considerations

Immune-related adverse events due to overactivation or suppression (autoimmunity, graft-vs-host disease, susceptibility to infection)Alloreactivity leading to transplant rejection or adverse outcomesTumor immune evasion via epigenetic silencing or downregulation of HLA-C expression
06

Interacting drugs

Currently, no approved drugs directly target HLA-C, but it is relevant in immunotherapy strategies (such as checkpoint modulators and allogeneic transplant protocols)

1 more in the full profile.

07

Biomarkers

HLA-C genotyping for patient selection in transplantationHLA-C allelic variation as a predictor for autoimmune disease susceptibility, therapy response in cancer, and viral infection outcomes

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