Lei Ke, Che Tuan-Jie, Wang Jin-Ming, Deng Ni, Zhang Lin, He Xiang-Yi
Dept. of Prosthodontics, School of Stomatology, Lanzhou University, Lanzhou 730000, China.
Hua Xi Kou Qiang Yi Xue Za Zhi. 2009 Dec;27(6):610-3.
The purpose of this study was to clone and analyze mutation in the eda-A1 gene for hypohidrotic ectodermal dysplasia (HED), and to construct a new recombined eukaryotic expression vector (mutant M, wild W) as a basis for further study on the genetic function.
After total mRNA was extracted from peripheral blood lymphocytes from the HED affect patient and control, eda-A1 gene was amplified by reverse transcription polymerase chain reaction (RT-PCR) with a pair of specific primers containing the constriction enzyme sites of BamH I and Hind III. When the vector pcDNA3.1(-) and eda-A1 (M/W) were digested by BamH I and Hind III respectively, eda-A1 (M/W) fragment was then ligated to vector pcDNA3.1 (-) and the new vector was named as pcDNA3.1 (-)-eda-A1-M/W.
eda-A1 gene was successfully cloned and a novel missence mutation was identified, which changes the codon 306 from glutamine to proline. PCR, restrictive endonuclease analysis and DNA sequencing were then performed to identify the recombinant eukaryotic expression vector pcDNA3.1 (-)-eda-A1-M/W, and the results were surely confirmed.
Our result indicates that the novel missense mutation in eda is associated with the isolated tooth agenesis and provide preliminary explanation for the abnormal clinical phenotype at a molecular structural level. And also, the recombinant eukaryotic expression vector pcDNA3.1 (-)-eda-A1-M/W was successfully constructed, which will be thereafter taken use of further study on eda gene in odontogenesis.
本研究旨在克隆并分析少汗性外胚层发育不良(HED)的eda - A1基因中的突变,并构建新的重组真核表达载体(突变体M、野生型W),为进一步研究其遗传功能奠定基础。
从HED患者和对照者的外周血淋巴细胞中提取总mRNA后,使用一对含有BamH I和Hind III限制性酶切位点的特异性引物,通过逆转录聚合酶链反应(RT - PCR)扩增eda - A1基因。当载体pcDNA3.1(-)和eda - A1(M/W)分别用BamH I和Hind III酶切后,将eda - A1(M/W)片段连接到载体pcDNA3.1(-)上,新载体命名为pcDNA3.1(-)-eda - A1 - M/W。
成功克隆eda - A1基因并鉴定出一个新的错义突变,该突变使密码子306由谷氨酰胺变为脯氨酸。随后进行PCR、限制性内切酶分析和DNA测序以鉴定重组真核表达载体pcDNA3.1(-)-eda - A1 - M/W,结果得到确切证实。
我们的结果表明,eda中的新错义突变与孤立性牙齿缺失有关,并在分子结构水平上为异常临床表型提供了初步解释。此外,成功构建了重组真核表达载体pcDNA3.1(-)-eda - A1 - M/W,此后将用于进一步研究eda基因在牙齿发育中的作用。