Searching for Digenic Inheritance in Deaf Brazilian Individuals Using the Multiplex Ligation-Dependent Probe Amplification Technique

被引:8
作者
da Silva-Costa, Sueli M. [1 ]
Arrojo Martins, Fabio Tadeu [1 ]
Pereira, Tania [2 ]
Pomilio, Mariza C. A. [2 ]
Marques-de-Faria, Antonia Paula [3 ]
Sartorato, Edi Lucia [1 ]
机构
[1] Univ Estadual Campinas, CBMEG, UNICAMP, BR-13083970 Campinas, SP, Brazil
[2] ATEAL, Jundiai, Brazil
[3] Univ Estadual Campinas, FCM, Dept Med Genet, Campinas, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
HEARING IMPAIRMENT; DEL(GJB6-D13S1830) MUTATION; CONGENITAL DEAFNESS; GJB2; MUTATIONS; DFNB1; GENE; PREVALENCE; CONNEXIN-26; POPULATION; IDENTIFICATION;
D O I
10.1089/gtmb.2011.0034
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mutations in the genes coding for connexin 26 (Cx26), connexin 30 (Cx30), and connexin 31 (Cx31) are the main cause of autosomal recessive nonsyndromic sensorineural hearing loss (AR-NSNHL). The 35delG mutation is the most frequent in the majority of Caucasian populations and may account for up to 70% of all GJB2 mutations. As a large number of affected individuals (10%-40%) with GJB2 mutations carry only one mutant allele, it has been postulated that the presence of additional mutations in the GJB6 gene (Cx30) explains the deafness condition found in these patients. In the present study, we screened the c. 35delG mutation in similar to 600 unrelated Brazilian patients, with moderate to profound AR-NSNHL. Other point mutations in the coding region of the GJB2 gene were screened by sequencing analysis as well as the IVS 1 + 1 G> A splice site mutation in the same gene. Digenic mutations including large deletions and duplications were investigated in the Cx26, 30, and 31 genes in monoallelic individuals for mutations in the GJB2 gene. Large deletions and duplications were assessed by multiplex ligation-dependent probe amplification. We found 46 patients with mutations in only one GJB2 allele. Different pathogenic mutations associated with c. 35delG were found in 13 patients. Two patients were identified with digenic heterozygous mutations. Our findings contributed to more accurate diagnosis and more appropriate genetic counseling in 28% of patients studied (13/46).
引用
收藏
页码:849 / 853
页数:5
相关论文
共 31 条
[1]  
Alexandrino Fabiana, 2004, Journal of Applied Genetics, V45, P249
[2]   Spectrum of GJB2 mutations causing deafness in the British Bangladeshi population [J].
Bajaj, Y. ;
Sirimanna, T. ;
Albert, D. M. ;
Qadir, P. ;
Jenkins, L. ;
Bitner-Glindzicz, M. .
CLINICAL OTOLARYNGOLOGY, 2008, 33 (04) :313-318
[3]   Screening for the GJB2 c.-3170 G>A (IVS 1+1 G>A) Mutation in Brazilian Deaf Individuals Using Multiplex Ligation-Dependent Probe Amplification [J].
da Silva-Costa, Sueli Matilde ;
Coeli, Fernanda Borchers ;
Lincoln-de-Carvalho, Carolina Rodrigues ;
Marques-de-Faria, Antonia Paula ;
Kurc, Mauricio ;
Pereira, Tania ;
Argentino Pomilio, Mariza Cavenaghi ;
Sartorato, Edi Lucia .
GENETIC TESTING AND MOLECULAR BIOMARKERS, 2009, 13 (05) :701-704
[4]   A novel deletion involving the connexin-30 gene, del(GJB6-d13s1854), found in trans with mutations in the GJB2 gene (connexin-26) in subjects with DFNB1 non-syndromic hearing impairment [J].
del Castillo, FJ ;
Rodríguez-Ballesteros, M ;
Alvarez, A ;
Hutchin, T ;
Leonardi, E ;
de Oliveira, CA ;
Azaiez, H ;
Brownstein, Z ;
Avenarius, MR ;
Marlin, S ;
Pandya, A ;
Shahin, H ;
Siemering, KR ;
Weil, D ;
Wuyts, W ;
Aguirre, LA ;
Martín, Y ;
Moreno-Pelayo, MA ;
Villamar, M ;
Avraham, KB ;
Dahl, HHM ;
Kanaan, M ;
Nance, W ;
Petit, C ;
Smith, RJH ;
Van Camp, G ;
Sartorato, EL ;
Murgia, A ;
Moreno, F ;
del Castillo, I .
JOURNAL OF MEDICAL GENETICS, 2005, 42 (07) :588-594
[5]   Prevalence and evolutionary origins of the del(GJB6-D13S1830) mutation in the DFNB1 locus in hearing-impaired subjects:: a multicenter study [J].
del Castillo, I ;
Moreno-Pelayo, MA ;
del Castillo, FJ ;
Brownstein, Z ;
Marlin, S ;
Adina, Q ;
Cockburn, DJ ;
Pandya, A ;
Siemering, KR ;
Chamberlin, GP ;
Ballana, E ;
Wuyts, W ;
Maciel-Guerra, AT ;
Alvarez, A ;
Villamar, M ;
Shohat, M ;
Abeliovich, D ;
Dahl, HHM ;
Estivill, X ;
Gasparini, P ;
Hutchin, T ;
Nance, WE ;
Sartorato, EL ;
Smith, RJH ;
Van Camp, G ;
Avraham, KB ;
Petit, C ;
Moreno, F .
AMERICAN JOURNAL OF HUMAN GENETICS, 2003, 73 (06) :1452-1458
[6]   Clinical features of the prevalent form of childhood deafness, DFNB1, due to a connexin-26 gene defect:: implications for genetic counselling [J].
Denoyelle, F ;
Marlin, S ;
Weil, D ;
Moatti, L ;
Chauvin, P ;
Garabédian, EN ;
Petit, C .
LANCET, 1999, 353 (9161) :1298-1303
[7]   Mutation analysis of the Cx26, Cx30, and Cx31 genes in autosomal recessive nonsyndromic hearing impairment [J].
Guertler, Nicolas ;
Egenter, Carole ;
Boesch, Nemya ;
Plasilova, Martina .
ACTA OTO-LARYNGOLOGICA, 2008, 128 (10) :1056-1062
[8]   GJB2 (connexin 26) variants and nonsyndromic sensorineural hearing loss: A HuGE review [J].
Kenneson, A ;
Braun, KV ;
Boyle, C .
GENETICS IN MEDICINE, 2002, 4 (04) :258-274
[9]   The gap junction communication channel [J].
Kumar, NM ;
Gilula, NB .
CELL, 1996, 84 (03) :381-388
[10]   Digenic inheritance of non-syndromic deafness caused by mutations at the gap junction proteins Cx26 and Cx31 [J].
Liu, Xue-Zhong ;
Yuan, Yongyi ;
Yan, Denise ;
Ding, Emilie Hong ;
Ouyang, Xiao Mei ;
Fei, Yu ;
Tang, Wenxue ;
Yuan, Huijun ;
Chang, Qing ;
Du, Li Lin ;
Zhang, Xin ;
Wang, Guojian ;
Ahmad, Shoeb ;
Kang, Dong Yang ;
Lin, Xi ;
Dai, Pu .
HUMAN GENETICS, 2009, 125 (01) :53-62