Zhang Xue-Jun, Chen Jian-Jun, Yang Sen, Cui Yong, Xiong Xiao-Yan, He Ping-Ping, Dong Pu-Lin, Xu Shi-Jie, Li Yue-Bin, Zhou Qing, Wang Yuan, Huang Wei
Institute of Dermatology, Anhui Medical University, 69 Meishan Road, Hefei, Anhui 230032, P.R. China.
J Dermatol Sci. 2003 Jun;32(1):11-7. doi: 10.1016/s0923-1811(03)00033-1.
hidrotic ectodermal dysplasia (HED) or Clouston syndrome is a rare autosomal dominant disorder affecting the skin and its derivatives. It is characterized by the triad of nail dystrophy, alopecia, and palmoplantar hyperkeratosis. To date, all mutations have been involving in three codons: G11R, A88V and V37E in the connexin 30 (Cx30) gene have been shown to cause this disorder.
in order to analyze the mutations of the Cx30 gene in Chinese Han patients with HED.
we collected a large Chinese HED family consisting of a total of 81 individuals including 28 HED patients (14 males and 14 females). The whole coding region of Cx30 was amplified by polymerase chain reaction and products analyzed by direct sequencing, then further confirmed at the mRNA level by RT-PCR.
we detected a transition, 31(G-->A), leading to a missense mutation (G11R) in genomic DNAs of 18 patients, and the point mutation was not found in 16 normal individuals in this HED family and in 188 unrelated, population-match control individuals. The transcription of mutated allele was confirmed by RT-PCR of Cx30 mRNA.
our data suggests that a G11R missense mutation in the Cx30 gene can cause HED in Chinese Han population and emphasizes the importance of screening for this as well as other Cx30 gene mutations in the HED.
汗孔角化性外胚层发育不良(HED)或克劳斯顿综合征是一种罕见的常染色体显性疾病,会影响皮肤及其附属器。其特征为三联征,即甲营养不良、脱发和掌跖角化过度。迄今为止,所有突变均涉及三个密码子:连接蛋白30(Cx30)基因中的G11R、A88V和V37E已被证明可导致该疾病。
分析中国汉族HED患者中Cx30基因的突变情况。
我们收集了一个庞大的中国HED家系,共81人,其中包括28例HED患者(14例男性和14例女性)。通过聚合酶链反应扩增Cx30的整个编码区,产物经直接测序分析,然后通过逆转录聚合酶链反应在mRNA水平进一步确认。
我们在18例患者的基因组DNA中检测到一个转换,31(G→A),导致错义突变(G11R),在这个HED家系的16名正常个体以及188名无关的、人群匹配的对照个体中未发现该点突变。通过Cx30 mRNA的逆转录聚合酶链反应证实了突变等位基因的转录。
我们的数据表明,Cx30基因中的G11R错义突变可导致中国汉族人群患HED,并强调了在HED中筛查该突变以及其他Cx30基因突变的重要性。