Toubanaki Dimitra K, Christopoulos Theodore K, Ioannou Penelope C, Gravanis Achille
Department of Chemistry, University of Patras, Patras, Greece.
Hum Mutat. 2008 Aug;29(8):1071-8. doi: 10.1002/humu.20774.
Most genotyping methods for known single-nucleotide polymorphisms (SNPs) are based on hybridization with allele-specific probes, oligonucleotide ligation reaction (OLR), primer extension or invasive cleavage. OLR offers superior specificity because it involves two recognition events; namely, the hybridization of an allele-specific probe and a common probe to adjacent positions on target DNA. OLR products can be detected by microtiter well-based colorimetric, time-resolved fluorimetric or chemiluminometric assays, electrophoresis, microarrays, microspheres, and homogeneous fluorimetric or colorimetric assays. We have developed a simple, robust, and low-cost disposable biosensor in dry-reagent format, which allows visual genotyping with no need for instrumentation. The OLR mixture contains a biotinylated common probe and an allele-specific probe with a (dA)(20) segment at the 3'-end. OLR products are denatured and applied to the biosensor next to gold nanoparticles that are decorated with oligo(dT) strands. The sensor is immersed in the appropriate buffer and all components migrate by capillary action. The OLR product is captured by immobilized streptavidin at the test zone (TZ) of the sensor and hybridizes with the oligo(dT) strands of the nanoparticles. A characteristic red line is generated due to the accumulation of nanoparticles. The excess nanoparticles are captured by immobilized oligo(dA) at the control zone of the strip, giving a second red line. We have applied successfully the proposed OLR-dipstick assay to the genotyping of four SNPs in the drug-metabolizing enzyme genes CYP2D6 (()3 and ()4) and CYP2C19 (()2 and ()3). The results were in agreement with direct sequencing.
大多数针对已知单核苷酸多态性(SNP)的基因分型方法是基于与等位基因特异性探针杂交、寡核苷酸连接反应(OLR)、引物延伸或侵入性切割。OLR具有卓越的特异性,因为它涉及两个识别事件;即等位基因特异性探针和通用探针与靶DNA上相邻位置的杂交。OLR产物可通过基于微孔板的比色法、时间分辨荧光法或化学发光法检测、电泳、微阵列、微球以及均相荧光法或比色法进行检测。我们开发了一种简单、稳健且低成本的一次性干式试剂生物传感器,无需仪器即可进行可视化基因分型。OLR混合物包含一个生物素化的通用探针和一个在3'端带有(dA)(20)片段的等位基因特异性探针。OLR产物经变性后应用于装饰有寡聚(dT)链的金纳米颗粒旁的生物传感器上。将传感器浸入适当的缓冲液中,所有成分通过毛细作用迁移。OLR产物在传感器的检测区(TZ)被固定化的链霉亲和素捕获,并与纳米颗粒的寡聚(dT)链杂交。由于纳米颗粒的积累产生一条特征性红线。多余的纳米颗粒在试纸条的对照区被固定化的寡聚(dA)捕获,形成第二条红线。我们已成功将所提出的OLR试纸条检测法应用于药物代谢酶基因CYP2D6(()3和()4)以及CYP2C19(()2和()3)中四个SNP的基因分型。结果与直接测序一致。