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March 1, 20260 citationsOpen Access

Analyses of ATP7B mRNA in Nasopharyngeal Swab Samples Increase Yields of Wilson Disease Molecular Genetic Diagnostics.

LMLenka Steiner MrázováAVAlena Čížková VrbackáFMFilip Majer

Key Points

  • The research aims to improve genetic diagnostics for Wilson disease by analyzing ATP7B mRNA in nasopharyngeal swabs.
  • Analyzed ATP7B mRNA in nasopharyngeal swabs compared to liver samples.
  • Used long-read nanopore sequencing to detect splicing changes and variant phasing.
  • Identified effects of synonymous and nonsense variants in Wilson disease patients.
  • Improved diagnostic yields for Wilson disease by analyzing ATP7B transcripts from non-invasive samples.
  • Characterized mRNA splicing abnormalities in four patients with unresolved genetic profiles.
  • Facilitated effective family counseling and treatment initiation for presymptomatic individuals.

Abstract

Wilson disease (WD) is an autosomal recessive disorder of copper transport caused by bi-allelic pathogenic variants in the ATPase copper transporting beta gene (ATP7B). Results of standard genetic diagnostics remain inconclusive in 3%-20% of WD patients in part due to problematic assessment of variants of unknown or conflicting pathogenicity (synonymous variants included). Correct interpretation of potential effects of such variants can be substantially enhanced by RNA analyses. This strategy is, however, of limited utility in WD patients because of predominant liver expression of ATP7B. To avoid invasive bioptic liver collection and increase WD diagnostic yields, we searched for a surrogate tissue sample and identified profiles of ATP7B transcripts in nasopharyngeal swabs that were comparable to liver. Amplicons spanning ATP7B Exons 3-21 were prepared from the swab material and analysed by long-read nanopore sequencing to enable the detection of splicing changes and variant phasing. Diagnostic utility of this novel in vivo methodology was demonstrated by characterization of mRNA splicing abnormalities caused by synonymous ATP7B variants c.1488C>T (p.(Gly496=)), c.2241C>T (p.(Ile747=)), c.2292C>T (p.(Phe764=)), and a nonsense variant c.2336G>A (p.(Trp779Ter)) in four WD patients, who were not genetically resolved by standard techniques. Nasopharyngeal swab sampling is minimally invasive and allows effective analyses of mRNA to detect and/or validate effects of ATP7B variants in WD patients. Conclusive genetic diagnosis attained by this novel technique may facilitate family counselling and substantiate initiation of copper-chelation therapy in presymptomatic individuals.

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Cite This Study

Mrázová et al. (2026) studied this question.

synapsesocial.com/papers/69a3d6eaec16d51705d2daf2https://doi.org/10.1155/humu/8416660
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Long-read sequencing of the ATP7B gene from Moroccan patients with suspected Wilson disease2025
  2. 2Epidemiology of Wilson’s Disease and Pathogenic Variants of the ATP7B Gene Leading to Diversified Protein Disfunctions2024 · 43 citations
  3. 3Genetic screening of ATP7B gene in Iranian Wilson disease patients: a diverse landscape of pathogenic variants2025 · 1 citations
  4. 4An incidental heterozygous ATP7B nonsense variant leading to a diagnostic pitfall for Wilson disease: a pediatric case report2026
  5. 5Predicting Functional Impacts of Amino Acid Substitutions in Exon 21 of the ATP7B Gene for Wilson Disease Diagnosis2024