Murphy Kathleen M, Berg Karin D, Eshleman James R
Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, MD 21287, USA.
Clin Chem. 2005 Jan;51(1):35-9. doi: 10.1373/clinchem.2004.039164. Epub 2004 Oct 28.
Despite considerable advances, DNA sequencing has remained somewhat time-consuming and expensive, requiring three separate steps to generate sequencing products from a template: amplification of the target sequence; purification of the amplified product; and a sequencing reaction. Our aim was to develop a method to routinely combine PCR amplification and cycle sequencing into one single reaction, enabling direct sequencing of genomic DNA.
Combined amplification and sequencing reactions were set up with Big Dye sequencing reagents (Applied Biosystems) supplemented with variable amounts of forward and reverse primers, deoxynucleotide triphosphates (dNTPs), and input DNA. Reactions were thermal-cycled for 35 or 45 cycles. Products were analyzed by capillary electrophoresis to detect sequencing products.
Reactions using two oligonucleotide primers at a ratio of 5:1 (500 nM primer 1 and 100 nM primer 2), 125 microM supplemental dNTPs, and 35-45 thermal cycles optimally supported combined amplification and cycle sequencing reactions. Our results suggest that these reactions are dominated by PCR during early cycles and convert to cycle sequencing in later cycles. We used this technique for a variety of sequencing applications, including the identification of germline mutations/polymorphisms in the Factor V and BRCA2 genes, sequencing of tumor DNA to identify somatic mutations in the DPC4/SMADH4 and FLT3 genes, and sequencing of 16S ribosomal DNA for bacterial speciation.
PCR amplification and cycle sequencing can be combined into a single reaction using the conditions described. This technique allows direct sequencing of genomic DNA, decreasing the cost and labor involved in gene sequencing.
尽管取得了显著进展,但DNA测序仍然有些耗时且昂贵,需要三个独立步骤才能从模板生成测序产物:目标序列的扩增;扩增产物的纯化;以及测序反应。我们的目标是开发一种方法,将PCR扩增和循环测序常规地合并为一个单一反应,从而实现基因组DNA的直接测序。
使用补充了不同量正向和反向引物、三磷酸脱氧核苷酸(dNTP)和输入DNA的Big Dye测序试剂(应用生物系统公司)建立联合扩增和测序反应。反应进行35或45个热循环。通过毛细管电泳分析产物以检测测序产物。
使用比例为5:1的两种寡核苷酸引物(500 nM引物1和100 nM引物2)、125 μM补充dNTP以及35 - 45个热循环的反应,能最佳地支持联合扩增和循环测序反应。我们的结果表明,这些反应在早期循环中以PCR为主,在后期循环中转变为循环测序。我们将该技术用于多种测序应用,包括鉴定凝血因子V和BRCA2基因中的种系突变/多态性、对肿瘤DNA进行测序以鉴定DPC4/SMADH4和FLT3基因中的体细胞突变,以及对16S核糖体DNA进行测序以进行细菌分类。
使用所述条件可将PCR扩增和循环测序合并为一个单一反应。该技术允许对基因组DNA进行直接测序,降低了基因测序的成本和工作量。