Ihalainen J, Siitari H, Laine S, Syvänen A C, Palotie A
University of Helsinki, Finland.
Biotechniques. 1994 May;16(5):938-43.
Simplification of molecular genetic techniques is one of the main features of large-scale clinical applications of mutation analysis. The solid-phase minisequencing method, which is based on single-nucleotide primer extension by a DNA polymerase on a solid support, is an easy way of detecting point mutations of previously known locations. Here the procedure was further simplified by the use of microplates made of scintillating plastics, a microplate format scintillation counter and an automatic microplate washer. DNA samples from patients with either a hereditary aspartylglucosaminidase (AGA) gene point mutation or an acquired N-ras gene mutation were analyzed by three different minisequencing detection procedures utilizing tritiated nucleotides. The new counting method with scintillating plates was compared to traditional liquid scintillation counting in scintillation vials or to another microplate format procedure, which requires addition of scintillation liquid. In all three methods, normal individuals, heterozygous carriers of the AGA mutation and homozygous patients could be unequivocally discriminated. The N-ras mutation in leukemic blasts could also be detected with high resolution. The coefficients of variation and reproducibility of the scintillating microplate method were almost identical to those of the traditional liquid scintillation assay, which was used as a reference method. The technical innovations adopted here for performing minisequencing assays reduce significantly the labor required without affecting the quality of the results.
分子遗传技术的简化是突变分析大规模临床应用的主要特征之一。基于DNA聚合酶在固相支持物上进行单核苷酸引物延伸的固相微测序方法,是检测已知位置点突变的简便方法。在此,通过使用闪烁塑料制成的微孔板、微孔板格式闪烁计数器和自动微孔板清洗机,该程序得到了进一步简化。利用氚标记的核苷酸,通过三种不同的微测序检测程序,对患有遗传性天冬氨酰葡糖胺酶(AGA)基因点突变或获得性N-ras基因突变患者的DNA样本进行了分析。将带有闪烁板的新计数方法与闪烁瓶中的传统液体闪烁计数法或另一种需要添加闪烁液的微孔板格式程序进行了比较。在所有三种方法中,正常个体、AGA突变的杂合携带者和纯合患者都能被明确区分。白血病原始细胞中的N-ras突变也能以高分辨率检测到。闪烁微孔板方法的变异系数和重现性与用作参考方法的传统液体闪烁测定法几乎相同。这里采用的用于进行微测序测定的技术创新显著减少了所需的劳动力,同时不影响结果的质量。