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通过全外显子组测序鉴定的阿尔及利亚听力受损个体中致病基因的多样性。

Diversity of the causal genes in hearing impaired Algerian individuals identified by whole exome sequencing.

作者信息

Ammar-Khodja Fatima, Bonnet Crystel, Dahmani Malika, Ouhab Sofiane, Lefèvre Gaelle M, Ibrahim Hassina, Hardelin Jean-Pierre, Weil Dominique, Louha Malek, Petit Christine

机构信息

Equipe de Génétique, Laboratoire de Biologie Moléculaire, Faculté des Sciences Biologiques, Université des Sciences et de la Technologie Houari Boumédiène (USTHB) Alger, Algeria.

Institut de la Vision, UMRS 1120 INSERM/UPMC/Institut Pasteur Paris, France.

出版信息

Mol Genet Genomic Med. 2015 May;3(3):189-96. doi: 10.1002/mgg3.131. Epub 2015 Feb 15.

Abstract

The genetic heterogeneity of congenital hearing disorders makes molecular diagnosis expensive and time-consuming using conventional techniques such as Sanger sequencing of DNA. In order to design an appropriate strategy of molecular diagnosis in the Algerian population, we explored the diversity of the involved mutations by studying 65 families affected by autosomal recessive forms of nonsyndromic hearing impairment (DFNB forms), which are the most prevalent early onset forms. We first carried out a systematic screening for mutations in GJB2 and the recurrent p.(Arg34*) mutation in TMC1, which were found in 31 (47.7%) families and 1 (1.5%) family, respectively. We then performed whole exome sequencing in nine of the remaining families, and identified the causative mutations in all the patients analyzed, either in the homozygous state (eight families) or in the compound heterozygous state (one family): (c.709C>T: p.(Arg237*)) and (c.2122C>T: p.(Arg708*)) in OTOF, (c.1334T>G: p.(Leu445Trp)) in SLC26A4, (c.764T>A: p.(Met255Lys)) in GIPC3, (c.518T>A: p.(Cys173Ser)) in LHFPL5, (c.5336T>C: p.(Leu1779Pro)) in MYO15A, (c.1807G>T: p.(Val603Phe)) in OTOA, (c.6080dup: p.(Asn2027Lys9)) in PTPRQ, and (c.6017del: p.(Gly2006Alafs13); c.7188_7189ins14: p.(Val2397Leufs*2)) in GPR98. Notably, 7 of these 10 mutations affecting 8 different genes had not been reported previously. These results highlight for the first time the genetic heterogeneity of the early onset forms of nonsyndromic deafness in Algerian families.

摘要

先天性听力障碍的基因异质性使得使用常规技术(如DNA的桑格测序)进行分子诊断既昂贵又耗时。为了设计适合阿尔及利亚人群的分子诊断策略,我们通过研究65个受常染色体隐性非综合征性听力障碍(DFNB型,即最常见的早发性类型)影响的家庭,探索了相关突变的多样性。我们首先对GJB2中的突变以及TMC1中反复出现的p.(Arg34*)突变进行了系统筛查,分别在31个(47.7%)家庭和1个(1.5%)家庭中发现了这些突变。然后,我们对其余9个家庭进行了全外显子组测序,并在所有分析的患者中鉴定出了致病突变,这些突变处于纯合状态(8个家庭)或复合杂合状态(1个家庭):OTOF中的(c.709C>T: p.(Arg237*))和(c.2122C>T: p.(Arg708*))、SLC26A4中的(c.1334T>G: p.(Leu445Trp))、GIPC3中的(c.764T>A: p.(Met255Lys))、LHFPL5中的(c.518T>A: p.(Cys173Ser))、MYO15A中的(c.5336T>C: p.(Leu1779Pro))、OTOA中的(c.1807G>T: p.(Val603Phe))、PTPRQ中的(c.6080dup: p.(Asn2027Lys9))以及GPR98中的(c.6017del: p.(Gly2006Alafs13); c.7188_7189ins14: p.(Val2397Leufs*2))。值得注意的是,这10个影响8个不同基因的突变中有7个此前未曾报道过。这些结果首次凸显了阿尔及利亚家庭中非综合征性耳聋早发性类型的基因异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31ea/4444160/37db9e1070fb/mgg30003-0189-f1.jpg

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