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Low density DNA microarray for detection of most frequent TP53 missense point mutations

机译:低密度DNA微阵列可检测最常见的TP53错义点突变

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摘要

BackgroundWe have developed an oligonucleotide microarray (genosensor) utilizing a double tandem hybridization technique to search for 9 point mutations located in the most frequently altered codons of the TP53 gene. Isolated and multiplexed PCR products, 108 and 92 bp long, from exons 7 and 8, respectively, were obtained from 24 different samples. Single-stranded target DNA was then prepared from isolated or multiplexed PCR products, through cyclic DNA synthesis. Independent ssDNA's were annealed with the corresponding pairs of labeled stacking oligonucleotides to create partially duplex DNA having a 7-nt gap, which contains the sequence that will be interrogated by the capture probes forming double tandem hybridization. In the case of multiplexed ssPCR products, only two stacking oligonucleotides were added per target, therefore the gap for the PCR products having two consecutive codons to be interrogated in exon 7 was 12 nt long, so only single tandem hybridization was produced with these respective probes.
机译:背景我们开发了一种利用双串联杂交技术的寡核苷酸微阵列(基因传感器),以寻找位于TP53基因最频繁改变的密码子中的9个点突变。从24个不同样品中分别获得了外显子7和8的108 bp和92 bp长的分离和多重PCR产物。然后,通过循环DNA合成,从分离或多重PCR产物中制备单链靶DNA。独立的ssDNA与相应的标记的堆叠寡核苷酸对退火,以创建具有7 nt缺口的部分双链DNA,该DNA包含将被捕获探针形成双串联杂交的序列。对于多重ssPCR产物,每个靶标仅添加两个堆叠寡核苷酸,因此在外显子7中具有两个连续密码子的PCR产物的间隔为12 nt长,因此仅使用这些探针进行单串联杂交。

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