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Updated: Jul 30, 2025

An Allele-specific Gene Expression Assay to Test the Functional Basis of Genetic Associations
Published on: November 3, 2010
HLA-F transcriptional and protein differential expression according to its genetic polymorphisms
Julien Paganini1, Pierre Faux2,3, Sophie Beley3,4
1Xegen, Gemenos, France.
Abstract:
Many specificities single out HLA-F: its structure, expression regulation at cell membrane and function. HLA-F mRNA is detected in the most cell types and the protein is localized in the ER and Golgi apparatus. When expressed at cell surface, HLA-F may be associated to β2-microglobulin and peptide or expressed as an open-conformer molecule. HLA-F reaches the membrane upon activation of different primary cell types and cell-lines. HLA-F has its highest affinity for the KIR3DS1-activating NK receptor, but also binds inhibitory immune receptors. Some studies reported that HLA-F expression is associated with its genotype. Higher HLA-F mRNA expression associated with F*01:01:02, and 3 noncoding SNPs, rs1362126, rs2523405, and rs2523393, located in HLA-F-AS1 or upstream the HLA-F sequence were associated with HLA-F mRNA expression. Given the implication of HLA-F in many clinical setting, and the undisclosed process of its expression regulation, we aim to confirm the effect of the aforementioned SNPs with HLA-F transcriptional and protein expression. We analyzed the distribution, frequency and linkage disequilibrium of these SNPs at worldwide scale in the 1000 Genomes Project samples. Influence on the genotype of each SNP on HLA-F expression was explored using RNAseq data from the 1000 Genomes Project, and using Q-PCR and intracellular cytometry in PBMC from healthy individuals. Our results show that the SNPs under studied displayed remarkably different allelic proportion according to geography and confirm that rs1362126, rs2523405, and rs2523393 displayed the most concordant results, with the highest effect size and a double-dose effect.
Insights
Human Leukocyte Antigen-F (HLA-F) expression is influenced by specific genetic variations (SNPs). Three noncoding SNPs (rs1362126, rs2523405, rs2523393) significantly impact HLA-F transcriptional and protein levels, showing a dose-dependent effect.
Area of Science:
- Immunogenetics
- Molecular Biology
- Human Leukocyte Antigen (HLA) system
Background:
- Human Leukocyte Antigen-F (HLA-F) plays a role in immune regulation and its expression is linked to specific genotypes.
- Previous studies suggest associations between HLA-F expression and certain single nucleotide polymorphisms (SNPs), but the regulatory mechanisms remain unclear.
Purpose of the Study:
- To investigate the influence of specific noncoding SNPs on HLA-F transcriptional and protein expression.
- To analyze the global distribution and linkage disequilibrium of these SNPs.
Main Methods:
- Analysis of SNP distribution and linkage disequilibrium using the 1000 Genomes Project dataset.
- Exploration of SNP genotype influence on HLA-F expression via RNA sequencing data from the 1000 Genomes Project.
- Validation using quantitative PCR (Q-PCR) and intracellular cytometry in peripheral blood mononuclear cells (PBMCs).
Main Results:
- The studied SNPs showed significant geographical variations in allelic proportions.
- SNPs rs1362126, rs2523405, and rs2523393 demonstrated the most consistent association with HLA-F expression.
- A notable double-dose effect was observed for these SNPs, indicating a significant impact on HLA-F levels.
Conclusions:
- Specific noncoding SNPs, particularly rs1362126, rs2523405, and rs2523393, are key regulators of HLA-F expression.
- These findings contribute to understanding HLA-F regulation and its implications in clinical settings.
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