Mutations in SDR9C7 gene encoding an enzyme for vitamin A metabolism underlie autosomal recessive congenital ichthyosis

Abstract

Autosomal recessive congenital ichthyosis (ARCI) is a heterogeneous group of hereditary skin disorder characterized by an aberrant cornification of the epidermis. ARCI is classified into a total of 11 subtypes (ARCI1-ARCI11) based on their causative genes or loci. Of these, the causative gene for only ARCI7 has not been identified, while it was previously mapped on chromosome 12p11.2-q13.1. In this study, we performed genetic analyses for three Lebanese families with ARCI, and successfully determined the linkage interval to 9.47Mb region on chromosome 12q13.13-q14.1, which was unexpectedly outside of the ARCI7 locus. Whole-exome sequencing and the subsequent Sanger sequencing led to the identification of missense mutations in short chain dehydrogenase/reductase family 9C, member 7 (SDR9C7) gene on chromosome 12q13.3, i.e. two families shared an identical homozygous mutation c.599T > C (p.Ile200Thr) and one family had another homozygous mutation c.214C > T (p.Arg72Trp). In cultured cells, expression of both the mutant SDR9C7 proteins was markedly reduced as compared to wild-type protein, suggesting that the mutations severely affected a stability of the protein. In normal human skin, the SDR9C7 was abundantly expressed in granular and cornified layers of the epidermis. By contrast, in a patient's skin, its expression in the cornified layer was significantly decreased. It has previously been reported that SDR9C7 is an enzyme to convert retinal into retinol. Therefore, our study not only adds a new gene responsible for ARCI, but also further suggests a potential role of vitamin A metabolismin terminal differentiation of the epidermis in humans. © The Authors 2016. Published by Oxford University Press.

Description

Keywords

Adolescent, Child, Dna mutational analysis, Female, Gene expression, Humans, Ichthyosis, Lebanon, Male, Mutation, missense, Oxidoreductases, Pedigree, Skin, Vitamin a, Young adult, Cytokeratin 1, Filaggrin, Involucrin, Itraconazole, Loricrin, Messenger rna, Oxidoreductase, Retinol, Short chain dehydrogenase reductase family 9c member 7, Terbinafine, Unclassified drug, Sdr9c7 protein, human, Article, Autosomal recessive congenital ichthyosis, Autosomal recessive disorder, Chromosome 12q, Codon, Consanguineous marriage, Controlled study, Dermatomycosis, Epidermis, Exon, Gene frequency, Gene locus, Genetic analysis, Genetic linkage, Genetic variability, Haplotype, Homozygosity, Human, Human cell, In vitro study, In vivo study, Lebanese, Microsatellite marker, Missense mutation, Onychomycosis, Persistent infection, Priority journal, Protein expression, Protein localization, Sanger sequencing, Sequence alignment, Vitamin metabolism, Whole exome sequencing, Enzymology, Genetics, Metabolism

Citation

Endorsement

Review

Supplemented By

Referenced By