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Prelingual Deafness: High Prevalence of a 30delG Mutation in the Connexin 26 Gene

Human Molecular Genetics · 1997 · Vol. 6(12) · pp. 2173–2177
Françoise DenoyelleDominique WeilMarion A. MawS.A. WilcoxNicholas LenchD R Allen-PowellAmelia H. OsbornH DahlAnna MiddletonMark HousemanCatherine DodéSandrine MarlinAmel Boulila‐ElgaiedM’hamed GratiHammadi AyadiS. BenarabPierre BitounGeneviève Lina‐GranadeJacqueline GodetMirna MustaphaJacques LoiseletElie El‐ZirAnne AuboisA JoannardJacqueline LevilliersE.N. GarabédianR F MuellerR. J McKinlay GardnerChristine Petit

Abstract

Prelingual non-syndromic (isolated) deafness is the most frequent hereditary sensory defect. In >80% of the cases, the mode of transmission is autosomal recessive. To date, 14 loci have been identified for the recessive forms (DFNB loci). For two of them, DFNB1 and DFNB2, the genes responsible have been characterized; they encode connexin 26 and myosin VIIA, respectively. In order to evaluate the extent to which the connexin 26 gene (Cx26) contributes to prelingual deafness, we searched for mutations in this gene in 65 affected Caucasian families originating from various countries, mainly tunisia, France, New Zealand and the UK. Six of these families are consanguineous, and deafness was shown to be linked to the DFNB1 locus, 10 are small non consanguineous families in which the segregation of the trait has been found to be compatible with the involvement of DFNB1, and in the remaining 49 families no linkage analysis has been performed. A total of 62 mutant alleles in 39 families were identified. Therefore, mutations in Cx26 represent a major cause of recessively inherited prelingual deafness since according to the present results they would underlie approximately half of the cases. In addition, one specific mutation, 30delG, accounts for the majority (approximately 70%) of the Cx26 mutant alleles. It is therefore one of the most frequent disease mutations so far identified. Several lines of evidence indicate that the high prevalence of the 30delG mutation arises from a mutation hot spot rather than from a founder effect. Genetic counseling for prelingual deafness has been so far considerably impaired by the difficulty in distinguishing genetic and non genetic deafness in families presenting with a single deaf child. Based on the results presented here, the development of a simple molecular test could be designed which should be of considerable help.

Hearing, Cochlea, Tinnitus, GeneticsConnexins and lens biologyNeuroscience of respiration and sleepGeneticsAlleleBiologyLocus (genetics)ConnexinGeneGenetic linkageMutationMutant

MeSH terms

Connexin 26AustraliaConsanguinityDeafnessFranceUnited KingdomHumansLebanonGenetic LinkageNew ZealandTunisiaPrevalenceSequence DeletionConnexins

Funding

  • Wellcome Trust
  • Institut National de la Santé et de la Recherche Médicale
  • Centre National de la Recherche Scientifique
  • Oticon Fonden
  • Medical Research Council
  • National Health and Medical Research Council
Citations
636
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Cited by
Prevalent connexin 26 gene (<i>GJB2</i>) mutations in Japanese
Journal of Medical Genetics · 2000 · 386 citations
References
Genetic Epidemiology of Hearing Impairment
Annals of the New York Academy of Sciences · 1991 · 949 citations
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Prelingual Deafness: High Prevalence of a 30delG Mutation in the Connexin 26 Gene · Scinovex