Sheffield V C, Beck J S, Kwitek A E, Sandstrom D W, Stone E M
Department of Pediatrics, University of Iowa, Iowa City.
Genomics. 1993 May;16(2):325-32. doi: 10.1006/geno.1993.1193.
Single-strand conformation polymorphism (SSCP) analysis has proven to be a simple and effective technique for the detection of single base substitutions. We have used SSCP to analyze 29 mouse globin mutations, 27 p53 mutations, and 8 rhodopsin mutations contained within different size PCR products. Our results indicate that the type of mutation (transition versus transversion) did not play a major role in determining whether a mutation was detected by SSCP analysis. The position of the base substitution was more important than the precise base substitution in determining whether a mutation was detected. We report that SSCP sensitivity varies dramatically with the size of the DNA fragment being analyzed. The optimal size fragment for sensitive base substitution detection by SSCP is approximately 150 bp. Our results illustrate the need to keep the size of the PCR fragment small when performing SSCP to detect mutations. Larger fragments can be analyzed when screening for polymorphisms when the need to detect every sequence variation is not as critical.
单链构象多态性(SSCP)分析已被证明是检测单碱基替换的一种简单有效的技术。我们已使用SSCP分析了不同大小PCR产物中包含的29个小鼠珠蛋白突变、27个p53突变和8个视紫红质突变。我们的结果表明,突变类型(转换与颠换)在决定突变是否能通过SSCP分析检测到方面不起主要作用。在决定突变是否能被检测到时,碱基替换的位置比精确的碱基替换更重要。我们报告,SSCP敏感性随所分析DNA片段大小的不同而显著变化。通过SSCP进行敏感碱基替换检测的最佳片段大小约为150 bp。我们的结果表明,在进行SSCP检测突变时,需要保持PCR片段较小。当检测每个序列变异的需求不那么关键时,在筛选多态性时可以分析更大的片段。