Le Maréchal C, Audrézet M P, Quéré I, Raguénès O, Langonné S, Férec C
EFS-Bretagne, CHU, Brest, France.
Hum Genet. 2001 Apr;108(4):290-8. doi: 10.1007/s004390100490.
More than 900 mutations and more than 200 different polymorphisms have now been reported in the cystic fibrosis transmembrane conductance regulator (CFTR) gene. Ten years after the cloning of the CFTR gene, the complete scanning of the 27 exons to identify known and novel mutations remains challenging. Rapid accurate identification of mutated alleles is important for prenatal diagnosis, for cascade screening in families at risk of cystic fibrosis (CF) and for understanding the correlation between genotype and phenotype. In this study, we report the successful use of denaturing ion-pair reverse-phase high performance liquid chromatography (D-HPLC) to analyse rapidly the complete coding sequence of the CFTR gene. With 27 pairs of polymerase chain reaction primers, we optimised the temperature conditions required for the analysis of each amplicon and validated thetest conditions on samples from a panel of 1552 CF patients who came from France and other European countries and who had mutations and polymorphisms located in the various melting domains of the gene. D-HPLC identified 415 mutated alleles previously characterised by denaturing gradient gel electrophoresis and DNA sequencing, plus 74 novel mutations reported here. This new technique for screening DNA for sequence variation was extremely accurate (it identified 100% of the CFTR alleles tested so far) and rapid (the complete CFTR gene could be analysed in less than a week). Our approach should reduce the number of untyped CF alleles in populations and thus decrease the residual risk in couples at risk of CF. This technique may be important not only for CF,but also for many other genes with a high frequency of point mutations at a variety of sites.
现已报道,囊性纤维化跨膜传导调节因子(CFTR)基因存在900多种突变和200多种不同的多态性。在CFTR基因克隆十年后,对其27个外显子进行全面扫描以识别已知和新的突变仍然具有挑战性。快速准确地识别突变等位基因对于产前诊断、对有囊性纤维化(CF)风险家庭的级联筛查以及理解基因型与表型之间的相关性都很重要。在本研究中,我们报告了成功使用变性离子对反相高效液相色谱法(D-HPLC)快速分析CFTR基因的完整编码序列。我们使用27对聚合酶链反应引物,优化了分析每个扩增子所需的温度条件,并在来自法国和其他欧洲国家的1552例CF患者的样本上验证了测试条件,这些患者的突变和多态性位于该基因的各个解链区域。D-HPLC鉴定出415个先前通过变性梯度凝胶电泳和DNA测序表征的突变等位基因,以及本文报道的74个新突变。这种用于筛选DNA序列变异的新技术极其准确(到目前为止,它识别出了所有测试的CFTR等位基因的100%)且快速(可在不到一周的时间内分析完整的CFTR基因)。我们的方法应能减少人群中未分型CF等位基因的数量,从而降低有CF风险夫妇的残留风险。该技术不仅对CF可能很重要,而且对许多其他在多个位点存在高频点突变的基因也可能很重要。