PCR-free mutation detection of BRCA1 on a zip-code microarray using ligase chain reaction

Agnishwar Girigoswami, Cheulhee Jung, Hyo Young Mun, Hyun Gyu Park
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引用次数: 13

Abstract

We describe here ligation-based strategy to detect mutations in BRCA1 utilizing zip-code microarray technology. In our first approach, PCR was performed to amplify the genomic regions containing the mutation sites. The PCR products were then used as templates in a subsequent ligation reaction using two ligation primers that flanked the mutation site. The primary allele-specific primer is designed to contain a base of mutation site at its 3′ end with 5′ complementarity to the respective zip-code sequence while the secondary common primer is modified by biotin at its 3′ end. Depending on the genotype of samples at the mutation site, the nick between the two ligation primers can be sealed in the presence of DNA ligase. The ligation products were then hybridized on the zip-code microarray followed by staining with streptavidine-cy3 to generate a fluorescent signal. Using this strategy we successfully genotyped selected Korean-specific mutation sites in exon 11 of BRCA1 with a wild type and two heterozygote mutant samples. Furthermore, we also demonstrated that ligase chain reaction using unamplified genomic DNA as direct templates is enough to generate sufficient signals for correct genotypings in a multiplexed manner, verifying first that PCR is not essential for this microarray-based strategy.

利用连接酶链反应在邮政编码微阵列上检测BRCA1的无pcr突变
我们在这里描述了利用邮政编码微阵列技术检测BRCA1突变的基于连接的策略。在我们的第一种方法中,采用PCR扩增包含突变位点的基因组区域。然后将PCR产物用作模板,在随后的连接反应中使用两个连接引物连接突变位点。一级等位基因特异性引物设计在其3 '端包含突变位点的碱基,与相应的邮政编码序列互补5 ',而二级公共引物在其3 '端被生物素修饰。根据突变位点样品的基因型,在DNA连接酶存在的情况下,两个连接引物之间的缺口可以被密封。然后将结扎产物在zip-code芯片上杂交,然后用链亲和素-cy3染色以产生荧光信号。利用这种策略,我们成功地在BRCA1基因外显子11上选择了韩国特异性突变位点,并对野生型和两个杂合子突变样本进行了基因分型。此外,我们还证明了使用未扩增的基因组DNA作为直接模板的连接酶链反应足以以多路方式产生足够的信号以进行正确的基因分型,首先验证了PCR对于这种基于微阵列的策略不是必需的。
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