Degenerated hair follicle cells and partial loss of sebaceous and eccrine glands in a familial case of axenfeld-rieger syndrome: An emerging role for the FOXC1/NFATC1 genetic axis
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Elsevier Ireland Ltd
Abstract
Background: Cutaneous malformations are at times associated with some forms of congenital heart defects. Many a times subtle cutaneous phenotypes maybe overlooked as their significance on the lives of individuals is minimal. Lebanon represents an area of high consanguinity, where the rates can go beyond 70% in some districts. For the past 6 years, we have been studying several genodermatoses in Lebanon including those with cardiac malformations. Objectives: The main aim of this study is to document the genetic basis of a familial case of Axenfeld-Rieger Syndrome (ARS) with a mild cutaneous phenotype represented histologically with degeneration/ absence of hair follicles and incomplete formation of sebaceous and eccrine glands, in addition to the cardiac and ocular phenotypes. Methods: Whole exome sequencing was performed on two identical-twins with ARS along with their affected father and non-affected mother. Sanger sequencing was used to confirm the mutation, and the effects of the mutations on protein function was assessed in vitro using transient transfections. Results: A novel mutation inFOXC1 designated p.L240Rfs*75 was found in both twins and their father. The affected individuals share also a rare documented variant in NFATC1 designated p.V197 M. Both were absent from 200 Lebanese exomes. Our in vitro results suggested a gain of function activity of the FOXC1/NFATC1 complex, confirming its documented role in controlling murine hair follicle stem cells quiescence and regeneration. Conclusion: This is the first documented human case with a mutation inFOXC1 regulating multi-organ developmental pathways that reflect a conserved mechanism in cell differentiation and proliferation. © 2018 Japanese Society for Investigative Dermatology
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Cardiac, Foxc1, Hair follicle, Nfatc1, Ocular, Anterior eye segment, Biopsy, Eccrine glands, Eye abnormalities, Eye diseases, hereditary, Forkhead transcription factors, Hek293 cells, Hela cells, Humans, Lebanon, Male, Mutation, Nfatc transcription factors, Pedigree, Sebaceous glands, Whole exome sequencing, Transcription factor foxc1, Forkhead transcription factor, Foxc1 protein, human, Nfatc1 protein, human, Transcription factor nfat, Article, Cell degeneration, Cell differentiation, Cell proliferation, Clinical article, Controlled study, Dna sequence, Eccrine gland, Gain of function mutation, Gene, Gene frequency, Gene function, Gene mutation, Genetic association, Genetic variability, Hair follicle cell, Heart disease, Human, Human cell, Human tissue, Immunoprecipitation, In vitro study, Miniaturization, Mutational analysis, Nfatc1 gene, Phenotype, Priority journal, Protein function, Rieger syndrome, Sanger sequencing, Sebaceous gland, Skin biopsy, Abnormalities, Cytology, Eye disease, Eye malformation, Genetics, Hek293 cell line, Hela cell line, Pathology