首页> 外文期刊>European journal of human genetics: EJHG >Comparison of fluorescent single-strand conformation polymorphism analysis and denaturing high-performance liquid chromatography for detection of EXT1 and EXT2 mutations in hereditary multiple exostoses.
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Comparison of fluorescent single-strand conformation polymorphism analysis and denaturing high-performance liquid chromatography for detection of EXT1 and EXT2 mutations in hereditary multiple exostoses.

机译:荧光单链构象多态性分析和变性高效液相色谱法检测遗传性多个外生糖中EXT1和EXT2突变的比较。

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摘要

EXT1 and EXT2 are two genes responsible for the majority of cases of hereditary multiple exostoses (HME), a dominantly inherited bone disorder. In order to develop an efficient screening strategy for mutations in these genes, we performed two independent blind screens of EXT1 and EXT2 in 34 unrelated patients with HME, using denaturing high-performance liquid chromatography (DHPLC) and fluorescent single-strand conformation polymorphism analysis (F-SSCP). The mutation likely to cause HME was found in 29 (85%) of the 34 probands: in 22 of these (76%), the mutation was in EXT1; seven patients (24%) had EXT2 mutations. Nineteen of these disease mutations have not been previously reported. Of the 42 different amplicon variants identified in total in the cohort, 40 were detected by DHPLC and 39 by F-SSCP. This corresponds to mutation detection efficiencies of 95% and 93% respectively. We have also found that we can confidently distinguish between different sequence variants in the same fragment using F-SSCP but not DHPLC. In light of this, and the similarly high sensitivities of the two techniques, we propose to continue screening with F-SSCP.
机译:EXT1和EXT2是导致遗传性多发性骨赘(HME)的大多数情况的两种基因,HME是一种显性遗传的骨病。为了开发出针对这些基因突变的有效筛查策略,我们使用变性高效液相色谱(DHPLC)和荧光单链构象多态性分析(34)对34例HME无关患者进行了EXT1和EXT2的两个独立盲筛( F-SSCP)。在34个先证者中发现了可能引起HME的突变:在其中22个(76%)中,该突变在EXT1中;而在另外一个先证者中,突变在EXT1中发现。 7名患者(24%)患有EXT2突变。这些疾病突变中有19种以前没有报道过。在该队列中总共鉴定出的42种不同的扩增子变体中,DHPLC检测到40种,F-SSCP检测到39种。这分别对应于95%和93%的突变检测效率。我们还发现,使用F-SSCP而非DHPLC可以自信地区分同一片段中的不同序列变体。鉴于此,以及这两种技术具有同样高的灵敏度,我们建议继续使用F-SSCP进行筛选。

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