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. 1998 May;19(1):60-2.
doi: 10.1038/ng0598-60.

Mutations in the human alpha-tectorin gene cause autosomal dominant non-syndromic hearing impairment

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Mutations in the human alpha-tectorin gene cause autosomal dominant non-syndromic hearing impairment

K Verhoeven et al. Nat Genet. 1998 May.

Erratum in

  • Nat Genet 1999 Apr;21(4):449

Abstract

The tectorial membrane is an extracellular matrix of the inner ear that contacts the stereocilia bundles of specialized sensory hair cells. Sound induces movement of these hair cells relative to the tectorial membrane, deflects the stereocilia, and leads to fluctuations in hair-cell membrane potential, transducing sound into electrical signals. Alpha-tectorin is one of the major non-collagenous components of the tectorial membrane. Recently, the gene encoding mouse alpha-tectorin (Tecta) was mapped to a region of mouse chromosome 9, which shows evolutionary conservation with human chromosome 11q (ref. 3), where linkage was found in two families, one Belgian (DFNA12; ref. 4) and the other, Austrian (DFNA8; unpublished data), with autosomal dominant non-syndromic hearing impairment. We determined the complete sequence and the intron-exon structure of the human TECTA gene. In both families, mutation analysis revealed missense mutations which replace conserved amino-acid residues within the zona pellucida domain of TECTA. These findings indicate that mutations in TECTA are responsible for hearing impairment in these families, and implicate a new type of protein in the pathogenesis of hearing impairment.

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Comment in

  • Hair hear!
    Phimister B. Phimister B. Nat Genet. 1998 May;19(1):8. doi: 10.1038/ng0598-8. Nat Genet. 1998. PMID: 9590277 No abstract available.

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