Gasser Robin B, Hu Min, Chilton Neil B, Campbell Bronwyn E, Jex Aaron J, Otranto Domenico, Cafarchia Claudia, Beveridge Ian, Zhu Xingquan
Department of Veterinary Science, The University of Melbourne, 250 Princes Highway, Werribee, Victoria 3030, Australia.
Nat Protoc. 2006;1(6):3121-8. doi: 10.1038/nprot.2006.485.
The accurate analysis of genetic variation has major implications in many areas of biomedical research, including the identification of infectious agents (such as parasites), the diagnosis of infections, and the detection of unknown or known disease-causing mutations. Mutation scanning methods, including PCR-coupled single-strand conformation polymorphism (SSCP), have significant advantages over many other nucleic acid techniques for the accurate analysis of allelic and mutational sequence variation. The present protocol describes the SSCP method of analysis, including all steps from the small-scale isolation of genomic DNA and PCR amplification of target sequences, through to the gel-based separation of amplicons and scanning for mutations by SSCP (either by the analysis of radiolabeled amplicons in mutation detection enhancement (MDE) gels or by non-isotopic SSCP using precast GMA gels). The subsequent sequence analysis of polymorphic bands isolated from gels is also detailed. The SSCP protocol can readily detect point mutations for amplicon sizes of up to 450-500 bp, and usually takes 1-2 days to carry out. This user-friendly, low-cost, potentially high-throughput platform has demonstrated the utility to study a wide range of pathogens and diseases, and has the potential to be applied to any gene of any organism.
遗传变异的准确分析在生物医学研究的许多领域都具有重要意义,包括感染因子(如寄生虫)的鉴定、感染的诊断以及未知或已知致病突变的检测。突变扫描方法,包括聚合酶链反应(PCR)耦合的单链构象多态性(SSCP),相对于许多其他核酸技术,在准确分析等位基因和突变序列变异方面具有显著优势。本方案描述了SSCP分析方法,包括从小规模基因组DNA分离和目标序列的PCR扩增,到基于凝胶的扩增子分离以及通过SSCP扫描突变(通过在突变检测增强(MDE)凝胶中分析放射性标记的扩增子或使用预制GMA凝胶进行非同位素SSCP)的所有步骤。还详细介绍了从凝胶中分离出的多态性条带的后续序列分析。SSCP方案能够轻松检测大小达450 - 500 bp的扩增子中的点突变,通常需要1 - 2天完成。这个用户友好、低成本且具有潜在高通量的平台已证明可用于研究多种病原体和疾病,并且有潜力应用于任何生物体的任何基因。