Abstract
Olmsted syndrome (OS) is a rare congenital disorder characterized by palmoplantar and periorificial keratoderma, alopecia in most cases, and severe itching. The genetic basis for OS remained unidentified. Using whole-exome sequencing of case-parents trios, we have identified a de novo missense mutation in TRPV3 that produces p.Gly573Ser in an individual with OS. Nucleotide sequencing of five additional affected individuals also revealed missense mutations in TRPV3 (which produced p.Gly573Ser in three cases and p.Gly573Cys and p.Trp692Gly in one case each). Encoding a transient receptor potential vanilloid-3 cation channel, TRPV3 is primarily expressed in the skin, hair follicles, brain, and spinal cord. In transfected HEK293 cells expressing TRPV3 mutants, much larger inward currents were recorded, probably because of the constitutive opening of the mutants. These gain-of-function mutations might lead to elevated apoptosis of keratinocytes and consequent skin hyperkeratosis in the affected individuals. Our findings suggest that TRPV3 plays essential roles in skin keratinization, hair growth, and possibly itching sensation in humans and selectively targeting TRPV3 could provide therapeutic potential for keratinization or itching-related skin disorders.
MeSH Terms
Adolescent
Adult
Alopecia/genetics
Amino Acid Sequence
Apoptosis/genetics
Cell Line, Transformed
Child
Exome
Female
HEK293 Cells
Humans
Keratoderma, Palmoplantar/genetics
Male
Molecular Sequence Data
Mutation, Missense
Pruritus/genetics
Syndrome
TRPV Cation Channels/genetics
Transfection/methods
Young Adult
Chemicals
TRPV Cation Channels
TRPV3 protein, human
Authors & Affiliations
21 authors, click to expand affiliations / ORCID
Lin Zhimiao
Department of Dermatology, Peking University First Hospital, Beijing, China.
Chen Quan
Lee Mingyang
Cao Xu
Zhang Jie
Ma Donglai
Chen Long
Hu Xiaoping
Wang Huijun
Wang Xiaowen
Zhang Peng
Liu Xuanzhu
Guan Liping
Tang Yiquan
Yang Haizhen
Tu Ping
Bu Dingfang
Zhu Xuejun
Wang KeWei
Li Ruoyu
Yang Yong
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