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ENPP1 突变通过改变黑色素生成导致隐性科尔病。

ENPP1 Mutation Causes Recessive Cole Disease by Altering Melanogenesis.

机构信息

Laboratory of Human Genetics and Embryology, Institute of Medical Biology, A*STAR, Singapore, Singapore; Laboratory of Human Cytogenetic, Molecular Genetics and Reproductive Biology, Farhat Hached University Hospital, Sousse, Tunisia.

L'Oréal Research & Innovation, Singapore, Singapore.

出版信息

J Invest Dermatol. 2018 Feb;138(2):291-300. doi: 10.1016/j.jid.2017.08.045. Epub 2017 Sep 28.

DOI:10.1016/j.jid.2017.08.045
PMID:28964717
Abstract

Cole disease is a genodermatosis of pigmentation following a strict dominant mode of inheritance. In this study, we investigated eight patients affected with an overlapping genodermatosis after recessive inheritance. The patients presented with hypo- and hyperpigmented macules over the body, resembling dyschromatosis universalis hereditaria in addition to punctuate palmoplantar keratosis. By homozygosity mapping and whole-exome sequencing, a biallelic p.Cys120Arg mutation in ectonucleotide pyrophosphatase/phosphodiesterase 1 (ENPP1) was identified in all patients. We found that this mutation, like those causing dominant Cole disease, impairs homodimerization of the ENPP1 enzyme that is mediated by its two somatomedin-B-like domains. Histological analysis revealed structural and molecular changes in affected skin that were likely to originate from defective melanocytes because keratinocytes do not express ENPP1. Consistently, RNA-sequencing analysis of patient-derived primary melanocytes revealed alterations in melanocyte development and in pigmentation signaling pathways. We therefore conclude that germline ENPP1 cysteine-specific mutations, primarily affecting the melanocyte lineage, cause a clinical spectrum of dyschromatosis, in which the p.Cys120Arg allele represents a recessive and more severe form of Cole disease.

摘要

科尔病是一种色素性遗传疾病,呈严格的显性遗传模式。本研究中,我们调查了 8 名表现为隐性遗传重叠遗传皮肤病的患者。这些患者表现为全身色素减退和色素沉着斑,类似于遗传性全身色素异常,此外还伴有点状掌跖角化病。通过纯合子作图和全外显子测序,在所有患者中均发现了外核苷酸焦磷酸酶/磷酸二酯酶 1(ENPP1)的双等位基因 p.Cys120Arg 突变。我们发现,该突变与导致显性科尔病的突变一样,会损害 ENPP1 酶的同源二聚化,而该酶的同源二聚化是由其两个 somatomedin-B 样结构域介导的。组织学分析显示,受影响皮肤的结构和分子发生变化,这些变化很可能源自功能缺陷的黑素细胞,因为角质形成细胞不表达 ENPP1。RNA-seq 分析患者来源的原代黑素细胞显示,黑素细胞发育和色素沉着信号通路发生改变。因此,我们得出结论,种系 ENPP1 半胱氨酸特异性突变主要影响黑素细胞谱系,导致色素异常的临床表现谱,其中 p.Cys120Arg 等位基因代表科尔病的隐性和更严重形式。

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