Updates in TECTA Mutation Spectrum: A Scoping Review

Background/Objectives: The TECTA gene variant is one of the most common causes of nonsyndromic congenital hearing loss affecting the mid-frequency range. Situated on chromosome 11q22–q24, the TECTA gene encodes α-tectorin, a non-collagenous protein of the tectorial membrane. Pathogenetic variants of TECTA are relatively rare, and numerous variants have been described, complicating the delineation of a clear and recognizable clinical phenotype. This scoping review aims to provide an up-to-date overview of the known TECTA variants causing autosomal dominant sensorineural hearing loss (ADSNHL) and their associated audiological phenotypes. Methods: A review of the English-language literature on hearing loss associated with TECTA variants was conducted using PubMed, Scopus, Google Scholar, and MEDLINE databases, in accordance with the “Preferred Reporting Items for Systematic Reviews and Meta-Analysis (PRISMA)” criteria for scoping review. Results: Eighteen studies met all inclusion criteria. Overall, 44 unique TECTA variants were identified after recurrent reports of the same cDNA-level variant were consolidated. Of these, 14 were classified as pathogenic or likely pathogenic (P/LP), 9 as variants of uncertain significance (VUS), while the remaining 21 had conflicting, benign/likely benign, or unavailable classification. Domain-based analysis showed a marked prevalence of variants in the ZA domain (21 variants, 47.73%), followed by the ZP domain (14 variants, 31.82%) and the ENT domain (5 variants, 11.36%). Thirty-two variant occurrences were reported in association with hearing loss in the mid frequencies and 12 in the high frequencies. Stable hearing loss was reported for 15 variant occurrences, whereas progressive hearing loss was reported for 13. Conclusions: The identification and characterization of novel genetic variants associated with hearing loss are essential for improving phenotype–genotype correlations. Early identification of the genetic etiology of hearing loss is becoming increasingly important, particularly in light of recent advances in gene therapy for pediatric hearing loss.

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Journal
Audiology Research
Published
2026-09-21
DOI
https://doi.org/10.3390/audiolres16050140
Primary Topic
Hearing, Cochlea, Tinnitus, Genetics
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article
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article

Updates in TECTA Mutation Spectrum: A Scoping Review

Andrea Migliorelli, Stefano Pelucchi, Francesco Stomeo, Giulia Vitetta et al.
Audiology Research
Hearing, Cochlea, Tinnitus, Genetics
article

Updates in TECTA Mutation Spectrum: A Scoping Review

Andrea Migliorelli, Stefano Pelucchi, Francesco Stomeo, Giulia Vitetta, Marianna Manuelli, Andrea Ciorba, Silvia Palma, Chiara Bianchini, Daniele Monzani
article en

Abstract

Background/Objectives: The TECTA gene variant is one of the most common causes of nonsyndromic congenital hearing loss affecting the mid-frequency range. Situated on chromosome 11q22–q24, the TECTA gene encodes α-tectorin, a non-collagenous protein of the tectorial membrane. Pathogenetic variants of TECTA are relatively rare, and numerous variants have been described, complicating the delineation of a clear and recognizable clinical phenotype. This scoping review aims to provide an up-to-date overview of the known TECTA variants causing autosomal dominant sensorineural hearing loss (ADSNHL) and their associated audiological phenotypes. Methods: A review of the English-language literature on hearing loss associated with TECTA variants was conducted using PubMed, Scopus, Google Scholar, and MEDLINE databases, in accordance with the “Preferred Reporting Items for Systematic Reviews and Meta-Analysis (PRISMA)” criteria for scoping review. Results: Eighteen studies met all inclusion criteria. Overall, 44 unique TECTA variants were identified after recurrent reports of the same cDNA-level variant were consolidated. Of these, 14 were classified as pathogenic or likely pathogenic (P/LP), 9 as variants of uncertain significance (VUS), while the remaining 21 had conflicting, benign/likely benign, or unavailable classification. Domain-based analysis showed a marked prevalence of variants in the ZA domain (21 variants, 47.73%), followed by the ZP domain (14 variants, 31.82%) and the ENT domain (5 variants, 11.36%). Thirty-two variant occurrences were reported in association with hearing loss in the mid frequencies and 12 in the high frequencies. Stable hearing loss was reported for 15 variant occurrences, whereas progressive hearing loss was reported for 13. Conclusions: The identification and characterization of novel genetic variants associated with hearing loss are essential for improving phenotype–genotype correlations. Early identification of the genetic etiology of hearing loss is becoming increasingly important, particularly in light of recent advances in gene therapy for pediatric hearing loss.

Audiology ResearchVol. 16(5)
University of Verona (IT), University of Parma (IT), University of Ferrara (IT), Azienda Unita' Sanitaria Locale Di Modena (IT)
Quality Education
Openalex Percentile: Top 13%
Hearing, Cochlea, Tinnitus, Genetics
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