A Tunisian family with a novel mutation in the gene CYP4F22 for lamellar ichthyosis and co‐occurrence of hearing loss in a child due to mutation in the SLC26A4 gene

错义突变 鱼鳞病 遗传学 桑格测序 遗传咨询 医学 突变 外显子 听力损失 先天性鱼鳞病 外显子组测序 生物 基因 听力学
作者
Marwa Sayeb,Zied Riahi,Nadia Laroussi,Crystel Bonnet,Lilia Romdhane,Rahma Mkaouar,Anissa Zaouak,J. Marrakchi,Ghaith Abdessalem,Olfa Messaoud,Oussema Bouchniba,Nacer Ghilane,M. Mokni,G. Besbes,Houda Yacoub‐Youssef,Christine Petit,Sonia Abdelhak
出处
期刊:International Journal of Dermatology [Wiley]
卷期号:58 (12): 1439-1443 被引量:8
标识
DOI:10.1111/ijd.14452
摘要

Abstract Background Co‐occurrence of two genetic diseases is challenging for accurate diagnosis and genetic counseling. The recent availability of whole exome sequencing ( WES ) has dramatically improved the molecular diagnosis of rare genetic diseases in particular in consanguineous populations. Methods We report here on a consanguineous family from Southern Tunisia including three members affected with congenital ichthyosis. The index case had a hearing loss ( HL ) and ichthyosis and was primarily suspected as suffering from keratitis‐ichthyosis‐deafness ( KID ) syndrome. WES was performed for the index case, and all members of the nuclear family were sequenced (Sanger method). Results The WES approach allowed the identification of two strong candidate variants in two different genes; a missense mutation c.1334T>G (p.Leu445Trp) in exon 11 of SLC 26A4 gene, associated with isolated HL and a novel missense mutation c.728G>T (p.Arg243Leu) in exon 8 of CYP 4F22 gene likely responsible for ichthyosis. These two mutations were predicted to be pathogenic by three pathogenicity prediction softwares (Scale‐Invariant Feature Transform [SIFT], Polymorphism Phenotyping [PolyPhen], Mutation Taster) to underlie the HL and ichthyosis, respectively. Conclusions The present study raises awareness about the importance of familial history for accurate diagnosis of syndromic genetic diseases and differential diagnosis with co‐occurrence of two distinct clinical entities. In addition, in countries with limited resources, WES sequencing for a single individual provides a cost effective tool for molecular diagnosis confirmation and genetic counseling.
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