A one-step coupled amplification and oligonucleotide ligation procedure for multiplex genetic typing.

F A Eggerding
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引用次数: 29

Abstract

A new technique, coupled amplification and oligonucleotide ligation (CAL), has been developed that allows for simultaneous multiplex amplification and genotyping of DNA. CAL is a biphasic method that combines in one assay DNA amplification by PCR with DNA genotyping by the oligonucleotide ligation assay (OLA). By virtue of a difference in the melting temperatures of PCR primer-target DNA and OLA probe-target DNA hybrids, the method allows preferential amplification of DNA during stage I and oligonucleotide ligation during stage II of the reaction. In stage I, target DNA is amplified using high-melting primers (Tm values between 68 degrees C and 89 degrees C) in a two-step PCR cycle that employs a 94 degrees C denaturation step and a 72 degrees C anneal-elongation step. In stage II, genotyping of PCR products by competitive oligonucleotide ligation with oligonucleotide probes (Tm values between 51 degrees C and 67 degrees C) located between the PCR primers is accomplished by several cycles of denaturation at 94 degrees C followed by anneal-ligation at 55 degrees C. Ligation products are fluorochrome-labeled at their 3' ends and analyzed electrophoretically on a fluorescent DNA sequencer. The CAL procedure has been used successfully to analyze human genomic DNA for cystic fibrosis (CF) alleles. Because product detection occurs concurrently with target amplification, the technique is rapid, highly sensitive, and specific and requires minimal sample processing.

一步耦合扩增和寡核苷酸连接程序为多基因分型。
一种新的技术,耦合扩增和寡核苷酸连接(CAL),允许同时多重扩增和基因分型的DNA。CAL是一种双相法,结合了PCR DNA扩增和寡核苷酸连接法(OLA)的DNA基因分型。由于PCR引物-靶DNA和OLA探针-靶DNA杂交体的熔融温度不同,该方法允许在反应的第I阶段优先扩增DNA,并在反应的第II阶段进行寡核苷酸连接。在第一阶段,目标DNA在两步PCR循环中使用高熔点引物(Tm值在68℃至89℃之间)扩增,该循环采用94℃变性步骤和72℃退火延伸步骤。在第二阶段,PCR产物的基因分型是通过位于PCR引物之间的寡核苷酸探针(Tm值在51℃至67℃之间)的竞争性寡核苷酸连接进行的,在94℃下进行变性,然后在55℃下进行退火连接。连接产物在其3'端进行荧光染料标记,并在荧光DNA测序仪上进行电泳分析。CAL程序已成功地用于分析人类基因组DNA的囊性纤维化(CF)等位基因。由于产物检测与目标扩增同时发生,因此该技术快速、高灵敏度和特异性,并且需要最少的样品处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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