Fortina P, Delgrosso K, Sakazume T, Santacroce R, Moutereau S, Su H J, Graves D, McKenzie S, Surrey S
Department of Pediatrics, University of Pennsylvania School of Medicine and The Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.
Eur J Hum Genet. 2000 Nov;8(11):884-94. doi: 10.1038/sj.ejhg.5200558.
The ability to analyze multiple polymorphic/mutation sites rapidly and accurately is pivotal in all areas of genetic analysis. We have applied single nucleotide primer extension (SNE) for detection of multiple point mutations in a micro-array format using two-color, fluorescent dye-tagged dideoxynucleoside triphosphate terminators (ddNTPs). The oligonucleotide primer ending one nucleotide short of the mutation site being probed is bound to the slide and single-base extended in place with two different Cy5/Cy3 dye-tagged terminators using solution-phase, locus-specific, single-stranded complementary templates generated by PCR from genomic DNA. The composite fluorescence produced contains peaks of distinct wave lengths corresponding to each Cy dye-tagged terminator incorporated, resulting in a fluorescent 'fingerprint' for each DNA target. DNA polymerase-catalyzed incorporation of Cy dye-tagged dideoxynucleoside triphosphates was dependent on the particular dyes, the specific ddNTP, the DNA target concentration, sequence of the template, on-slide temperature cycling and washing conditions. Results from analysis of mutations in the human hemochromatosis and connexin 26 genes show that this approach has several advantages over existing methods and is simple, rapid, robust, cost effective and accurate with potential applications in many areas of genetic analysis.
在基因分析的所有领域中,快速、准确地分析多个多态性/突变位点的能力至关重要。我们应用单核苷酸引物延伸(SNE)技术,采用双色、荧光染料标记的双脱氧核苷三磷酸终止剂(ddNTPs),以微阵列形式检测多个点突变。将在被探测突变位点前一个核苷酸处终止的寡核苷酸引物固定在载玻片上,并使用通过PCR从基因组DNA产生的溶液相、位点特异性、单链互补模板,用两种不同的Cy5/Cy3染料标记的终止剂在位进行单碱基延伸。产生的复合荧光包含与每个掺入的Cy染料标记终止剂相对应的不同波长的峰,从而为每个DNA靶标产生荧光“指纹”。DNA聚合酶催化的Cy染料标记双脱氧核苷三磷酸的掺入取决于特定的染料、特定的ddNTP、DNA靶标浓度、模板序列、载玻片上的温度循环和洗涤条件。对人类血色素沉着症和连接蛋白26基因中的突变分析结果表明,该方法相对于现有方法具有多个优点,并且简单、快速、稳健、具有成本效益且准确,在基因分析的许多领域具有潜在应用。