Epidermolytic hyperkeratosis with polycyclic posoriasiform plaques resulting from a mutation in the keratin 1 gene

遗传性皮肤病 表皮松解性角化过度 角化过度 掌跖角化病 遗传学 生物 红皮病 表型 外显子 皮肤病科 病理 基因 医学
作者
E. J. Michael,Paul I. Schneiderman,Marc E. Grossman,Angela M. Christiano
出处
期刊:Experimental Dermatology [Wiley]
卷期号:8 (6): 501-503 被引量:20
标识
DOI:10.1111/j.1600-0625.1999.tb00309.x
摘要

Abstract Epidermolytic hyperkeratosis (EHK) is a genodermatosis caused by mutations in either the keratin 1 (K1) or keratin 10 (K10) genes, and characterized by erythroderma and blistering at birth, with development of a ribbed, ichthyotic hyperkeratosis and palmoplantar keratoderma. A wide variety of mutations within the highly conserved helix termination motifs of the central rod domains of the K1 or K10 genes correlate with the highly variable phenotypic severity observed in EHK. We report a unique EHK‐like phenotype exhibiting autosomal dominant inheritance with variable expressivity in four affected individuals in a single family. Clinically, affected individuals manifest transient blistering at birth followed by chronic diffuse palmoplantar keratoderma without transgradiens. Intermittent flares of non‐migratory polycylic erythematous psoriasiform plaques which worsen and abate in severity were present in all affected individuals, but showed immense individual variation in both severity and duration, ranging from weeks to months. Histopathologic examination of the psoriasiform plaques demonstrated the characteristic features of EHK. Sequencing of the K1 gene in affected family members revealed a heterozygous A‐to‐T transversion at nucleotide 1435 within exon 7, converting isoleucine (ATT) to phenylalanine (TTT), (I479F). The mutation resides within the highly conserved helix termination motif of the helix 2B segment of the K1 gene. This unique clinical phenotype and the associated K1 mutation have not been previously described, and the associated K1 mutation have not been previously described, and it is referred to here as EHK with polycyclic, psoriasiform plaques (EHK/PPP).
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