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Seven genome-wide significant loci and eight HLA alleles associated with shingles susceptibility identifiedGenetic Links Connect Shingles to Stroke and Lupus Risk

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Key Takeaway
Note that seven genomic loci and eight HLA alleles are associated with shingles susceptibility and related conditions.

This meta-analysis synthesizes data from a large genome-wide association study involving 72,935 cases and 1,644,597 controls of European ancestry to identify genetic markers for shingles. The analysis identified seven genome-wide significant loci: IGHG1, IFNAR2, MPV17L2 (IL12RB1), BACH2, and RHOBTB1. Additionally, HLA fine-mapping identified eight independently associated HLA alleles, primarily mapping to HLA-B (HLA-B*44:02), with further associations at HLA-C (HLA-C*02:02) and HLA-DQB1 (HLA-DQB1*05:02).

The study also utilized bidirectional two-sample Mendelian randomization to explore potential causal relationships. These analyses identified causal effects of shingles on stroke, herpes simplex infection, and systemic lupus erythematosus. The authors also suggested that pain conditions and arthrosis may serve as risk factors for shingles.

While the study provides significant genomic insights into shingles susceptibility and its potential links to other conditions like stroke, it does not provide clinical trial data or direct evidence regarding treatment efficacy. Limitations were not reported.

How this fits prior evidence

This finding addresses a gap by identifying specific genetic loci and HLA alleles associated with shingles. It also provides a potential link between shingles and stroke, which relates to prior coverage of stroke prevalence in patients with infratentorial lesions and the management of post-stroke fatigue.

Researchers conducted a large-scale study involving over 1.6 million people to identify genetic factors related to shingles, also known as herpes zoster. The analysis identified seven specific locations in the genome associated with an increased risk of developing the condition. These markers include genes such as IGHG1 and IFNAR2.

The study also looked closely at how these genetics relate to other health issues. Through a method called Mendelian randomization, researchers found evidence suggesting that shingles may have causal effects on stroke, herpes simplex infection, and systemic lupus erythematosus. Additionally, the data suggested that certain pain conditions and joint issues might be risk factors for shingles.

Because this is a large-scale genetic analysis rather than a clinical trial, these findings do not provide direct information on treatments or medications. The results show how genetics and infections may interact with other diseases. Patients should speak with their doctor to understand how these genetic links apply to their personal health history.

What this means for you:
Genetic research suggests shingles may be linked to stroke, lupus, and herpes simplex infection.

Common questions

What specific genes are linked to shingles?

The study identified seven genome-wide significant loci for shingles susceptibility. These include the genes IGHG1, IFNAR2, MPV17L2 (IL12RB1), BACH2, and RHOBTB1. Additionally, eight independently associated HLA alleles were found, primarily mapping to HLA-B.

Does shingles cause stroke or other conditions?

The study used a method called Mendelian randomization to find evidence of causal effects. The results suggested that shingles may have causal effects on stroke, herpes simplex infection, and systemic lupus erythematosus.

What risk factors were found for developing shingles?

In addition to genetic markers, the study's analysis suggested that certain pain conditions and arthrosis (joint issues) may act as risk factors for individuals who develop shingles.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedAug 2026
View Original Abstract ↓
Shingles (herpes zoster), caused by reactivation of varicella zoster virus (VZV), affects approximately one third of the global population. Besides environmental factors, host genetics play a role in determining susceptibility to shingles. Here, we performed a large-scale genome-wide association study (GWAS) meta-analysis of shingles across five cohorts comprising 72,935 cases and 1,644,597 controls of European ancestry. We identified seven genome-wide significant loci, including novel associations at IGHG1, IFNAR2, MPV17L2 (IL12RB1), BACH2, and RHOBTB1, implicating MHC class I antigen presentation, type I interferon signaling, humoral immunity, and T-cell memory maintenance as key genetic determinants of shingles susceptibility. HLA fine-mapping identified eight independently associated HLA alleles, mapping predominantly to HLA-B (HLA-B*44:02), with additional associations at HLA-C (HLA-C*02:02) and an independent association at HLA-DQB1 (HLA-DQB1*05:02). Gene set analysis and stratified LD score regression identified significant enrichment of shingles heritability in immune tissues and pathways. Phenome-wide association study, genetic correlation analysis, and bidirectional two-sample Mendelian randomization identified causal effects of shingles on stroke, herpes simplex infection, and systemic lupus erythematosus, and suggested pain conditions and arthrosis as risk factors for shingles. These findings advance understanding of the genetic architecture of VZV reactivation and its causal relationships with other diseases.
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