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基于两种缓冲液PAGE系统的SSCP/HD分析:用于囊性纤维化及其他人类遗传疾病快速灵敏突变筛查的通用方案。

Two buffer PAGE system-based SSCP/HD analysis: a general protocol for rapid and sensitive mutation screening in cystic fibrosis and any other human genetic disease.

作者信息

Liechti-Gallati S, Schneider V, Neeser D, Kraemer R

机构信息

Department of Pediatrics, Inselspital, University of Berne, Switzerland.

出版信息

Eur J Hum Genet. 1999 Jul;7(5):590-8. doi: 10.1038/sj.ejhg.5200338.

Abstract

The large size of many disease genes and the multiplicity of mutations complicate the design of an adequate assay for the identification of disease-causing variants. One of the most successful methods for mutation detection is the single strand conformation polymorphism (SSCP) technique. By varying temperature, gel composition, ionic strength and additives, we optimised the sensitivity of SSCP for all 27 exons of the CFTR gene. Using simultaneously SSCP and heteroduplex (HD) analysis, a total of 80 known CF mutations (28 missense, 22 frameshift, 17 nonsense, 13 splicesite) and 20 polymorphisms was analysed resulting in a detection rate of 97.5% including the 24 most common mutations worldwide. The ability of this technique to detect mutations independent of their nature, frequency, and population specificity was confirmed by the identification of five novel mutations (420del9, 1199delG, R560S, A613T, T1299I) in Swiss CF patients, as well as by the detection of 41 different mutations in 198 patients experimentally analysed. We present a three-stage screening strategy allowing analysis of seven exons within 5 hours and analysis of the entire coding region within 1 week, including sequence analysis of the variants. Additionally, our protocol represents a general model for point mutation analysis in other genetic disorders and has already been successfully established for OTC deficiency, collagene deficiency, X-linked myotubular myopathy (XLMTM), Duchenne and Becker muscular dystrophy (DMD, BMD), Wilson disease (WD), Neurofibromatosis I and II, Charcot-Marie-Tooth disease, hereditary neuropathy with liability to pressure palsies, and defects in mitochondrial DNA. No other protocol published so far presents standard SSCP/HD conditions for mutation screening in different disease genes.

摘要

许多致病基因的庞大尺寸以及突变的多样性使得设计一种用于识别致病变异的合适检测方法变得复杂。单链构象多态性(SSCP)技术是最成功的突变检测方法之一。通过改变温度、凝胶组成、离子强度和添加剂,我们优化了SSCP对CFTR基因所有27个外显子的检测灵敏度。同时使用SSCP和异源双链(HD)分析,共分析了80个已知的CF突变(28个错义突变、22个移码突变、17个无义突变、13个剪接位点突变)和20个多态性位点,检测率达97.5%,其中包括全球24个最常见的突变。通过在瑞士CF患者中鉴定出5个新突变(420del9、1199delG、R560S、A613T、T1299I)以及在198例实验分析患者中检测到41个不同突变,证实了该技术能够独立于突变的性质、频率和人群特异性进行检测。我们提出了一种三阶段筛查策略,可在5小时内分析7个外显子,并在1周内分析整个编码区,包括对变异体的序列分析。此外,我们的方案代表了其他遗传疾病中进行点突变分析的通用模型,并且已成功应用于鸟氨酸氨甲酰基转移酶缺乏症、胶原蛋白缺乏症、X连锁肌管性肌病(XLMTM)、杜氏和贝克肌营养不良症(DMD、BMD)、威尔逊病(WD)、神经纤维瘤病I型和II型、夏科-马里-图斯病、遗传性压迫易感性神经病以及线粒体DNA缺陷。到目前为止,尚未有其他已发表的方案针对不同疾病基因的突变筛查给出标准的SSCP/HD条件。

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