AI Article Synopsis

  • The study identifies mutations in the KDSR gene as the cause of a new inherited skin disorder within the erythrokeratoderma spectrum, characterized by severe skin lesions.
  • Genome sequencing revealed a significant 346 kb inversion and other mutations that disrupt KDSR function, leading to symptoms like thick, scaly skin on various body parts.
  • Treatment with isotretinoin resulted in nearly complete resolution of symptoms in two patients, highlighting the potential of retinoic acid in targeting alternative ceramide synthesis pathways.

Article Abstract

The discovery of new genetic determinants of inherited skin disorders has been instrumental to the understanding of epidermal function, differentiation, and renewal. Here, we show that mutations in KDSR (3-ketodihydrosphingosine reductase), encoding an enzyme in the ceramide synthesis pathway, lead to a previously undescribed recessive Mendelian disorder in the progressive symmetric erythrokeratoderma spectrum. This disorder is characterized by severe lesions of thick scaly skin on the face and genitals and thickened, red, and scaly skin on the hands and feet. Although exome sequencing revealed several of the KDSR mutations, we employed genome sequencing to discover a pathogenic 346 kb inversion in multiple probands, and cDNA sequencing and a splicing assay established that two mutations, including a recurrent silent third base change, cause exon skipping. Immunohistochemistry and yeast complementation studies demonstrated that the mutations cause defects in KDSR function. Systemic isotretinoin therapy has achieved nearly complete resolution in the two probands in whom it has been applied, consistent with the effects of retinoic acid on alternative pathways for ceramide generation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5473720PMC
http://dx.doi.org/10.1016/j.ajhg.2017.05.003DOI Listing

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