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III 型局限性面皮肤发育不良:中国两例 Setleis 综合征家系。

Focal facial dermal dysplasias type III: Two families with Setleis syndrome in China.

机构信息

Department of Dermatology, Xinhua Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, China.

Institute of Dermatology, Shanghai Jiaotong University School of Medicine, Shanghai, China.

出版信息

J Dermatol. 2022 Oct;49(10):1057-1061. doi: 10.1111/1346-8138.16488. Epub 2022 Jun 17.

Abstract

Focal facial dermal dysplasias type III (FFDD III), commonly known as Setleis syndrome (SS; Online Mendelian Inheritance in Man #227260), is a type of focal facial dermal dysplasia, characterized by bitemporal atrophic skin lesion. The homozygous mutations in the TWIST2 gene and copy number variants (CNV) at chromosome 1p36.22p36.21 were reported as the pathogenic mechanism. In this study, we collected DNA samples from a large Chinese family affected by FFDD and found no mutation of TWSIT2. To determine the underlying genetic cause, we performed a multipoint parameter linkage analysis and haplotype analysis of the family 1 and mapped SS to a region Chr1:14.074-20.524cM (rs2401090-rs2294642). Copy number variant was identified by Sanger sequencing, which breakpoints were Chr1:11695972 and Chr1:11829858. The region contains eight genes, including FBXO2, FBXO44, FBXO6, MAD2L2, DRAXIN, AK125437, AGTRAP, and C1orf167. There were no candidate gene mutations of the second family with SS. Our study further reduced the size of CNV resulting in SS (Chr1:11696993-11829858) and focused on eight genes.

摘要

III 型局限性面部真皮发育不良(FFDD III),通常称为 Setleis 综合征(SS;Online Mendelian Inheritance in Man #227260),是一种局限性面部真皮发育不良,其特征为双侧颞部萎缩性皮肤病变。TWIST2 基因突变和 1p36.22p36.21 染色体上的拷贝数变异(CNV)被报道为致病机制。在这项研究中,我们收集了一个受 FFDD 影响的大型中国家族的 DNA 样本,未发现 TWIST2 的突变。为了确定潜在的遗传原因,我们对家族 1 进行了多点参数连锁分析和单倍型分析,并将 SS 定位到 Chr1:14.074-20.524cM(rs2401090-rs2294642)区域。通过 Sanger 测序鉴定了拷贝数变异,断裂点为 Chr1:11695972 和 Chr1:11829858。该区域包含八个基因,包括 FBXO2、FBXO44、FBXO6、MAD2L2、DRAXIN、AK125437、AGTRAP 和 C1orf167。第二个 SS 家族没有候选基因突变。我们的研究进一步缩小了导致 SS 的 CNV 大小(Chr1:11696993-11829858),并集中在八个基因上。

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