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Published in: European Archives of Oto-Rhino-Laryngology 11/2016

01-11-2016 | Otology

Etiology and associated GJB2 mutations in Mauritanian children with non-syndromic hearing loss

Authors: Ely Cheikh Mohamed Moctar, Zied Riahi, Hala El Hachmi, Fatimetou Veten, Ghlana Meiloud, Christine Bonnet, Sonia Abdelhak, Mohammed Errami, Ahmed Houmeida

Published in: European Archives of Oto-Rhino-Laryngology | Issue 11/2016

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Abstract

Origins of all hearing impairment forms may be divided into genetic mutations and acquired influence. Both carry damage to the inner ear structure resulting in a mild to profound dysfunction of the auditory system. The purpose of this study was to assess the different etiologies of deafness in two reference centers for hearing-impaired children in Nouakchott/Mauritania. Data on gender, age, consanguinity, etiology and family history of deafness were gathered by interviewing the custodians of 139 children with hearing loss. DNA of pupils with hereditary non-syndromic deafness was then screened for GJB2 mutations by sequencing methods. Postnatal hearing loss was found in 36 (25.8 %) out of the 139 children surveyed. The main etiologies of this group were infections caused by meningitis (12.9 %) and measles (2.8 %). Unknown and ototoxic origins accounted for, respectively, 5.7 and 3.5 %. In 103 (74.1 %) children, deafness was identified near after the time of birth and, therefore, presumed as congenital. 56.8 % of deaf children had consanguineous parents. Two GJB2 mutations, c.del35G with an allele frequency of 4.7 % and R32C (3.7 %) were detected. Infections such as meningitis and measles were the most prevalent causes of postnatal deafness. In cases of congenital hearing impairment, two GJB2 allele variants, i.e., del35G and R32C (3.7 %) were detected. Extended genetic testing is recommended for a more comprehensive determination of congenital causes.
Literature
2.
go back to reference Morton CC, Nance WE (2006) Newborn hearing screening—a silent revolution. Engl J Med 18:2151–2164CrossRef Morton CC, Nance WE (2006) Newborn hearing screening—a silent revolution. Engl J Med 18:2151–2164CrossRef
3.
go back to reference Javidnia H, Carson N, Awubwa M, Byaruhanga R, Mack D, Vaccani JP (2014) Connexin gene mutations among Ugandan patients with nonsyndromic sensorineural hearing loss. Laryngoscope 124:373–376CrossRef Javidnia H, Carson N, Awubwa M, Byaruhanga R, Mack D, Vaccani JP (2014) Connexin gene mutations among Ugandan patients with nonsyndromic sensorineural hearing loss. Laryngoscope 124:373–376CrossRef
4.
go back to reference Chan DK, Chang KW (2014) GJB2-associated hearing loss: systematic review of worldwide prevalence, genotype, and auditory phenotype. Laryngoscope 124:34–53CrossRef Chan DK, Chang KW (2014) GJB2-associated hearing loss: systematic review of worldwide prevalence, genotype, and auditory phenotype. Laryngoscope 124:34–53CrossRef
5.
go back to reference Zelante L, Gasparini P, Estivill X, Melchionda S, D’Agruma L, Govea N et al (1997) Connexin26 mutations associated with the most common form of non-syndromic neurosensory autosomal recessive deafness (DFNB1) in Mediterraneans. Hum Mol Genet 6:1605–1609CrossRefPubMed Zelante L, Gasparini P, Estivill X, Melchionda S, D’Agruma L, Govea N et al (1997) Connexin26 mutations associated with the most common form of non-syndromic neurosensory autosomal recessive deafness (DFNB1) in Mediterraneans. Hum Mol Genet 6:1605–1609CrossRefPubMed
6.
go back to reference Brobby GW, Muller-Myhsok B, Horstmann RD (1997) Connexin 26 R143W mutation associated with recessive nonsyndromic sensorineural deafness in Africa. N Engl J Med 19:548–550 (no abstract available) Brobby GW, Muller-Myhsok B, Horstmann RD (1997) Connexin 26 R143W mutation associated with recessive nonsyndromic sensorineural deafness in Africa. N Engl J Med 19:548–550 (no abstract available)
7.
go back to reference Denoyelle F, Weil D, Maw MA, Wilcox SA, Lench NJ, Allen-Powell DR et al (1997) Prelingual deafness: high prevalence of a 30delG mutation in the connexin 26 gene. Hum Mol Genet 6:2173–2177CrossRefPubMed Denoyelle F, Weil D, Maw MA, Wilcox SA, Lench NJ, Allen-Powell DR et al (1997) Prelingual deafness: high prevalence of a 30delG mutation in the connexin 26 gene. Hum Mol Genet 6:2173–2177CrossRefPubMed
8.
go back to reference Fuse Y, Doi K, Hasegawa T, Sugii A, Hibino H, Kubo T (1999) Three novel connexin26 gene mutations in autosomal recessive non-syndromic deafness. Neuroreport 10:1853–1857CrossRefPubMed Fuse Y, Doi K, Hasegawa T, Sugii A, Hibino H, Kubo T (1999) Three novel connexin26 gene mutations in autosomal recessive non-syndromic deafness. Neuroreport 10:1853–1857CrossRefPubMed
9.
go back to reference Kelley PM, Harris DJ, Comer BC, Askew JW, Fowler T, Smith SD et al (1998) Novel mutations in the connexin 26 gene (GJB2) that cause autosomal recessive (DFNB1) hearing loss. Am J Hum Genet 62:792–799CrossRefPubMedPubMedCentral Kelley PM, Harris DJ, Comer BC, Askew JW, Fowler T, Smith SD et al (1998) Novel mutations in the connexin 26 gene (GJB2) that cause autosomal recessive (DFNB1) hearing loss. Am J Hum Genet 62:792–799CrossRefPubMedPubMedCentral
10.
go back to reference Gasparini P, Rabionet R, Barbujani G, Melçhionda S, Petersen M, Brøndum-Nielsen K et al (2000) High carrier frequency of the 35delG deafness mutation in European populations. Genetic Analysis Consortium of GJB2 35delG. Eur J Hum Genet 8:19–23CrossRefPubMed Gasparini P, Rabionet R, Barbujani G, Melçhionda S, Petersen M, Brøndum-Nielsen K et al (2000) High carrier frequency of the 35delG deafness mutation in European populations. Genetic Analysis Consortium of GJB2 35delG. Eur J Hum Genet 8:19–23CrossRefPubMed
11.
go back to reference Green GE, Scott DA, McDonald JM, Woodworth GG, Sheffield VC, Smith RJ (1999) Carrier rates in the midwestern US for GJB2 mutations causing inherited deafness. JAMA 16:2211–2216CrossRef Green GE, Scott DA, McDonald JM, Woodworth GG, Sheffield VC, Smith RJ (1999) Carrier rates in the midwestern US for GJB2 mutations causing inherited deafness. JAMA 16:2211–2216CrossRef
12.
go back to reference Riahi Z, Hammami H, Ouragini H, Messai H, Zainine R, Bouyacoub Y et al (2013) Update of the spectrum of GJB2 gene mutations in Tunisian families with autosomal recessive nonsyndromic hearing loss. Gene 525:1–4CrossRefPubMed Riahi Z, Hammami H, Ouragini H, Messai H, Zainine R, Bouyacoub Y et al (2013) Update of the spectrum of GJB2 gene mutations in Tunisian families with autosomal recessive nonsyndromic hearing loss. Gene 525:1–4CrossRefPubMed
13.
go back to reference Abidi O, Boulouiz R, Nahili H, Ridal M, Alami MN, Tlili A et al (2007) GJB2 (connexin 26) gene mutations in Moroccan patients with autosomal recessive non-syndromic hearing loss and carrier frequency of the common GJB2-35delG mutation. Int J Pediatr Otorhinolaryngol 71:1239–1245CrossRefPubMed Abidi O, Boulouiz R, Nahili H, Ridal M, Alami MN, Tlili A et al (2007) GJB2 (connexin 26) gene mutations in Moroccan patients with autosomal recessive non-syndromic hearing loss and carrier frequency of the common GJB2-35delG mutation. Int J Pediatr Otorhinolaryngol 71:1239–1245CrossRefPubMed
14.
15.
go back to reference Derekoy FS (2000) Etiology of deafness in Afyon school for the deaf in Turkey. Int J Pediatr Otorhinolaryngol 55:125–131CrossRefPubMed Derekoy FS (2000) Etiology of deafness in Afyon school for the deaf in Turkey. Int J Pediatr Otorhinolaryngol 55:125–131CrossRefPubMed
16.
go back to reference da Silva LP, Queiros F, Lima I (2006) Etiology of hearing impairment in children and adolescents of a reference center APADA in the city of Salvador, state of Bahia. Rev Bras Otorhinolaringol 72:33–36CrossRef da Silva LP, Queiros F, Lima I (2006) Etiology of hearing impairment in children and adolescents of a reference center APADA in the city of Salvador, state of Bahia. Rev Bras Otorhinolaringol 72:33–36CrossRef
18.
go back to reference Mc Pherson B, Holborrow CA (1985) A study of deafness in West Africa: the Gambian hearing Project. Int J Pediatr Otorhinolaryngol 10:115–135CrossRef Mc Pherson B, Holborrow CA (1985) A study of deafness in West Africa: the Gambian hearing Project. Int J Pediatr Otorhinolaryngol 10:115–135CrossRef
19.
go back to reference Wonkam A, Noubiap JJ, Djomou F, Fieggen K, Njock R, Toure GB (2013) Aetiology of childhood hearing loss in Cameroon (sub-SaharanAfrica). Eur J Med Genet 56:20–25CrossRefPubMed Wonkam A, Noubiap JJ, Djomou F, Fieggen K, Njock R, Toure GB (2013) Aetiology of childhood hearing loss in Cameroon (sub-SaharanAfrica). Eur J Med Genet 56:20–25CrossRefPubMed
20.
go back to reference Haddad J Jr (2011) Hearing loss. In: Kliegman RM, Behrman RE, Jenson HB, Stanton BF (eds) Nelson textbook of pediatrics, 19th edn. Elsevier, Philadelphia, p 629 Haddad J Jr (2011) Hearing loss. In: Kliegman RM, Behrman RE, Jenson HB, Stanton BF (eds) Nelson textbook of pediatrics, 19th edn. Elsevier, Philadelphia, p 629
22.
go back to reference Cone-Wesson B, Vohr BR, Sininger YS, Widen JE, Folsom RC, Gorga MP (2000) Identification of neonatal hearing impairment: infants with hearing loss. Ear Hear 21:488–507CrossRefPubMed Cone-Wesson B, Vohr BR, Sininger YS, Widen JE, Folsom RC, Gorga MP (2000) Identification of neonatal hearing impairment: infants with hearing loss. Ear Hear 21:488–507CrossRefPubMed
23.
go back to reference Van Riper LA, Kileny PR (1999) ABR hearing screening for high-risk infants. Am J Otol 20:516–521PubMed Van Riper LA, Kileny PR (1999) ABR hearing screening for high-risk infants. Am J Otol 20:516–521PubMed
24.
go back to reference Zakzouk S (2002) Consanguinity and hearing impairment in developing countries: a custom to be discouraged. J Laryngol Otol 116:811–816CrossRefPubMed Zakzouk S (2002) Consanguinity and hearing impairment in developing countries: a custom to be discouraged. J Laryngol Otol 116:811–816CrossRefPubMed
25.
26.
27.
go back to reference Snoeckx RL, Huygen PL, Feldmann D, Marlin S, Denoyelle F, Waligora J et al (2005) GJB2 mutations and degree of hearing loss: a multicenter study. Am J Hum Genet 77:945–957CrossRefPubMedPubMedCentral Snoeckx RL, Huygen PL, Feldmann D, Marlin S, Denoyelle F, Waligora J et al (2005) GJB2 mutations and degree of hearing loss: a multicenter study. Am J Hum Genet 77:945–957CrossRefPubMedPubMedCentral
28.
go back to reference Kabahuma RI, Ouyang X, Du LL, Yan D, Hutchin T, Ramsay M et al (2011) Absence of GJB2 gene mutations, the GJB6 deletion (GJB6-D13S1830) and four common mitochondrial mutations in nonsyndromic genetic hearing loss in a South African population. Int J Pediatr Otorhinolaryngol 75:611–617CrossRefPubMedPubMedCentral Kabahuma RI, Ouyang X, Du LL, Yan D, Hutchin T, Ramsay M et al (2011) Absence of GJB2 gene mutations, the GJB6 deletion (GJB6-D13S1830) and four common mitochondrial mutations in nonsyndromic genetic hearing loss in a South African population. Int J Pediatr Otorhinolaryngol 75:611–617CrossRefPubMedPubMedCentral
29.
go back to reference Trotta L, Iacona E, Primignani P, Castorina P, Radaelli C, Del Bo L et al (2011) GJB2 and MTRNR1 contributions in children with hearing impairment from Northern Cameroon. Int J Audiol 50:133–138CrossRefPubMed Trotta L, Iacona E, Primignani P, Castorina P, Radaelli C, Del Bo L et al (2011) GJB2 and MTRNR1 contributions in children with hearing impairment from Northern Cameroon. Int J Audiol 50:133–138CrossRefPubMed
30.
go back to reference Gasmelseed NM, Schmidt M, Magzoub MM, Macharia M, Elmustafa OM, Ototo B et al (2004) Low frequency of deafness-associated GJB2 variants in Kenya and Sudan and novel GJB2 variants. Hum Mutat 23:206–207CrossRefPubMed Gasmelseed NM, Schmidt M, Magzoub MM, Macharia M, Elmustafa OM, Ototo B et al (2004) Low frequency of deafness-associated GJB2 variants in Kenya and Sudan and novel GJB2 variants. Hum Mutat 23:206–207CrossRefPubMed
31.
go back to reference Hamed CT, Bollahi MA, Abdelhamid I, Med Mahmoud MA, Ba B, Ghaber S et al (2012) Frequencies and ethnic distribution of ABO and Rh(D) blood groups in Mauritania: results of first nationwide study. Int J Immunogenet 39:151–154CrossRefPubMed Hamed CT, Bollahi MA, Abdelhamid I, Med Mahmoud MA, Ba B, Ghaber S et al (2012) Frequencies and ethnic distribution of ABO and Rh(D) blood groups in Mauritania: results of first nationwide study. Int J Immunogenet 39:151–154CrossRefPubMed
32.
go back to reference Veten FM, Abdelhamid IO, Meiloud GM, Ghaber SM, Salem ML, Abbes S et al (2012) Hb S [p6(A3)Glu→Val, GAG>GTG] and β-globin gene cluster haplotype distribution in Mauritania. Hemoglobin 36:311–315CrossRefPubMed Veten FM, Abdelhamid IO, Meiloud GM, Ghaber SM, Salem ML, Abbes S et al (2012) Hb S [p6(A3)Glu→Val, GAG>GTG] and β-globin gene cluster haplotype distribution in Mauritania. Hemoglobin 36:311–315CrossRefPubMed
33.
go back to reference Belguith H, Tlili A, Dhouib H, Ben Rebeh I, Lahmar I, Charfeddine I, Driss N, Ghorbel A, Ayadi H, Masmoudi S (2009) Mutation in gap and tight junctions in patients with non-syndromic hearing loss. Biochem Biophys Res Commun 385(1):1–5CrossRefPubMed Belguith H, Tlili A, Dhouib H, Ben Rebeh I, Lahmar I, Charfeddine I, Driss N, Ghorbel A, Ayadi H, Masmoudi S (2009) Mutation in gap and tight junctions in patients with non-syndromic hearing loss. Biochem Biophys Res Commun 385(1):1–5CrossRefPubMed
34.
go back to reference Abidi O, Boulouiz R, Nahili H, Bakhouch K, Wakrim L, Rouba H, Chafik A, Hassar M, Barakat A (2008) Carrier frequencies of mutations/polymorphisms in the connexin 26 gene (GJB2) in the Moroccan population. Genet Test 12(4):569–574CrossRefPubMed Abidi O, Boulouiz R, Nahili H, Bakhouch K, Wakrim L, Rouba H, Chafik A, Hassar M, Barakat A (2008) Carrier frequencies of mutations/polymorphisms in the connexin 26 gene (GJB2) in the Moroccan population. Genet Test 12(4):569–574CrossRefPubMed
35.
go back to reference Masmoudi S, Elgaied-Boulila A, Kassab I, Ben Arab S, Blanchard S, Bouzouita JE, Drira M et al (2000) 2000 Determination of the frequency of connexin26 mutations in inherited sensorineural deafness and carrier rates in the Tunisian population using DGGE. J Med Genet 37(11):E39CrossRefPubMedPubMedCentral Masmoudi S, Elgaied-Boulila A, Kassab I, Ben Arab S, Blanchard S, Bouzouita JE, Drira M et al (2000) 2000 Determination of the frequency of connexin26 mutations in inherited sensorineural deafness and carrier rates in the Tunisian population using DGGE. J Med Genet 37(11):E39CrossRefPubMedPubMedCentral
36.
go back to reference Charif M, Bounaceur S, Abidi O, Nahili H, Rouba H, Kandil M, Boulouiz R, Barakat A (2012) The c.242G>A mutation in LRTOMT gene is responsible for a high prevalence of deafness in the Moroccan population. Mol Biol Rep 39:11011–11016CrossRefPubMed Charif M, Bounaceur S, Abidi O, Nahili H, Rouba H, Kandil M, Boulouiz R, Barakat A (2012) The c.242G>A mutation in LRTOMT gene is responsible for a high prevalence of deafness in the Moroccan population. Mol Biol Rep 39:11011–11016CrossRefPubMed
37.
go back to reference Prasad S, Cucci RA, Green GE, Smith RJ (2000) Genetic testing for hereditary hearing loss: connexin 26 (GJB2) allele variants and two novel deafness-causing mutations (R32C and 645-648delTAGA). Hum Mutat 16:502–508CrossRefPubMed Prasad S, Cucci RA, Green GE, Smith RJ (2000) Genetic testing for hereditary hearing loss: connexin 26 (GJB2) allele variants and two novel deafness-causing mutations (R32C and 645-648delTAGA). Hum Mutat 16:502–508CrossRefPubMed
39.
Metadata
Title
Etiology and associated GJB2 mutations in Mauritanian children with non-syndromic hearing loss
Authors
Ely Cheikh Mohamed Moctar
Zied Riahi
Hala El Hachmi
Fatimetou Veten
Ghlana Meiloud
Christine Bonnet
Sonia Abdelhak
Mohammed Errami
Ahmed Houmeida
Publication date
01-11-2016
Publisher
Springer Berlin Heidelberg
Published in
European Archives of Oto-Rhino-Laryngology / Issue 11/2016
Print ISSN: 0937-4477
Electronic ISSN: 1434-4726
DOI
https://doi.org/10.1007/s00405-016-4036-z

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