Mostowska Adrianna, Zadurska Małgorzata, Rakowska Adriana, Lianeri Margarita, Jagodziński Paweł P
Department of Biochemistry and Molecular Biology, Poznan University of Medical Sciences, Poznan, Poland.
Eur J Oral Sci. 2013 Oct;121(5):403-11. doi: 10.1111/eos.12071. Epub 2013 Jul 13.
Tooth agenesis is the most common anomaly of dental development. The purpose of the present study was to identify the causative mutation(s) in a family with a syndromic form of hypodontia. The male proband lacked 19 permanent teeth and showed defects of hair, but lacked ectodermal symptoms of skin and nails. Direct sequencing of the coding regions, including exon/intron boundaries of the msh homeobox 1 (MSX1), paired box 9 (PAX9), ectodysplasin A (EDA), and wingless-type MMTV integration site family, member 10 (WNT10A) genes, was carried out in affected family members. All identified nucleotide variations were tested in 200 healthy individuals using high-resolution melting (HRM) curve analysis to exclude the possibility that they represent rare polymorphisms. A novel heterozygous c.59delC mutation, segregating in the autosomal-dominant model, was identified in the PAX9 gene of the proband and the family members studied. This one-nucleotide deletion, located in a highly conserved paired box sequence, resulted in a frameshift (p.Pro20Argfs65) and in premature termination of translation, yielding a truncated protein 258 amino acids shorter than the wildtype protein. No pathogenic mutations were found in the MSX1, EDA, and WNT10A genes. In conclusion, the novel PAX9 deletion might be responsible for tooth agenesis and trichodysplasia in the investigated family. This c.59delC mutation potentially leads to PAX9 transcription factor haploinsufficiency.
牙齿发育不全是最常见的牙齿发育异常。本研究的目的是确定一个患有综合征型牙发育不全的家族中的致病突变。男性先证者缺失19颗恒牙,有毛发缺陷,但没有皮肤和指甲的外胚层症状。对包括错配修复同源盒1(MSX1)、配对盒9(PAX9)、外胚层发育不良蛋白A(EDA)和成翼型MMTV整合位点家族成员10(WNT10A)基因的编码区(包括外显子/内含子边界)进行直接测序,对受影响的家族成员进行检测。使用高分辨率熔解(HRM)曲线分析在200名健康个体中对所有鉴定出的核苷酸变异进行检测,以排除它们代表罕见多态性的可能性。在先证者和所研究的家族成员的PAX9基因中鉴定出一种新的杂合c.59delC突变,该突变以常染色体显性模式分离。这种单核苷酸缺失位于高度保守的配对盒序列中,导致移码(p.Pro20Argfs65)和翻译提前终止,产生一种比野生型蛋白短258个氨基酸的截短蛋白。在MSX1、EDA和WNT10A基因中未发现致病突变。总之,新的PAX9缺失可能是所研究家族中牙齿发育不全和毛发发育异常的原因。这种c.59delC突变可能导致PAX9转录因子单倍体不足。