Clinical comparison of hearing-impaired patients with DFNB1 against heterozygote carriers of connexin 26 mutations.
نویسندگان
چکیده
OBJECTIVES The aim of the study is to assess clinical characteristics of individuals with nonsyndromic sensorineural hearing loss (NSSNHL) with genetic mutations in GJB2 and/or GJB6. We describe and compare one group with biallelic mutations against a group of heterozygote mutation carriers. METHODS A total of 350 patients between the ages of 3 months and 80 years referred to a tertiary care outpatient otology practice for NSSNHL were screened for genetic mutations. Direct sequencing of GJB2 and polymerase chain reaction analysis of GJB6 was performed and clinical data from history and physical, audiologic testing and radiographic studies were reviewed. RESULTS Thirty-two patients were found to have biallelic mutations (incidence of 9.1%). Twenty-five patients were found to have only one GJB2 mutation (incidence of 7.1%). Severe to profound hearing loss occurred in 85% of the homozygote group and 38% of the heterozygote group. Both groups similarly had a propensity toward bilateral, symmetric, nonprogressive hearing loss with rare inner ear malformations on radiologic imaging. CONCLUSIONS These two patient populations have similar incidences in a cohort of patients evaluated for NSSNHL, which is higher than general population heterozygote carrier rates. Heterozygote mutation carriers had less hearing impairment, but most other factors demonstrated no differences. These results support the theory of an unidentified genetic factor contributing to hearing loss in some heterozygote carriers. Therefore, genetic counseling should consider the complexity of their genetic factors and the limitations of current screening.
منابع مشابه
بررسی موتاسیون های شایع ژن های GJB2 و GJB6 در مبتلایان به بیماری ناشنوایی غیرسندرومی اتوزومی مغلوب در منطقهی آذربایجان شرقی
Background and Objective: Profound hearing loss is one of the most prevalent congenital disorders affecting about 1 in 1000 newborns. Autosomal recessive non-syndromic hearing loss (ARNSHL) is the predominant form of the severe inherited childhood deafness. This type of hearing loss in one-half of the cases is caused by mutations in GJB2 (connexin 26) and GJB6 (connexin 30) genes located at DFN...
متن کاملMutation Analysis of Connexin 26 Gene and Del (GJB6-D13S1830) in Patients with Hereditary Deafness from Two Provinces in Iran
Mutations in the connexin 26 (Cx26) gene at the DFNB1 locus on chromosome 13q12 are associated with autosomal recessive non-syndromic hearing loss (ARNSHL). There are many known mutations in this gene that cause hearing loss. A single frameshift, at position 35 (35delG) accounts for 50% of mutations in the Caucasian population with carrier frequencies of 1.5-2.5%. In this study we investigated ...
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Mutations in GJB2, the gene encoding connexin-26 at the DFNB1 locus on 13q12, are found in as many as 50% of subjects with autosomal recessive, nonsyndromic prelingual hearing impairment. However, genetic diagnosis is complicated by the fact that 10%-50% of affected subjects with GJB2 mutations carry only one mutant allele. Recently, a deletion truncating the GJB6 gene (encoding connexin-30), n...
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متن کاملA recessive Mendelian model to predict carrier probabilities of DFNB1 for nonsyndromic deafness.
Mutations in the DFNB1 locus, where two connexin genes are located (GJB2 and GJB6), account for half of congenital cases of nonsyndromic autosomal recessive deafness. Because of the high frequency of DFNB1 gene mutations and the availability of genetic diagnostic tests involving these genes, they are the best candidates to develop a risk prediction model of being hearing impaired. People underg...
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عنوان ژورنال:
- The Laryngoscope
دوره 121 4 شماره
صفحات -
تاریخ انتشار 2011