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On-chip ligation of multiplexing probe-pairs for identifying point mutations out of dense SNP loci

机译:芯片上多路探针对的连接,用于识别密集SNP位点中的点突变

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摘要

Detailed analyses of dense single nucleotide polymorphism (SNP) loci within rifampin-resistance determining region (RRDR) are very important for the early assessment of drug resistance of Mycobacterium tuberculosis. A strategy was developed here to specifically identify point mutations out of dense SNP loci by on-chip ligation of multiplexing probe-pairs (MPPs). A probe-pair combines a common probe with a discriminating probe which is covalently attached to a DNA chip. The common probe hybridizes to the discriminating probe via a unique "zip-code complement". The allele-specific part on the 3'-end of the discriminating probe becomes covalently ligated to the adjacent part on the 5'-end of the common probe if and only if a mutation is present. Thus upon zip-code recognition, the process of identifying a mutation of interest is entirely located into corresponding well on the chip. As a consequence, cross-reactions and biased competitive attachments to targets, both of which result from the presence of various multiplexing probes, are greatly minimized. Mutation detection was performed by direct visualization using enzyme-linked assay. The method was demonstrated with an initial set of 24 probe-pairs targeting 22 clinically meaningful mutations within an 81-bp RRDR. 130-bp fragments of the rpoB gene from 15 clinical isolates were identified and were in 100% agreement with results from independent sequencing. (C) 2008 Elsevier B.V. All rights reserved.
机译:利福平耐药性决定区域(RRDR)中密集的单核苷酸多态性(SNP)基因座的详细分析对于结核分枝杆菌的耐药性的早期评估非常重要。在这里开发了一种策略,通过芯片上多路复用探针对(MPP)的连接,从密集的SNP位点中特异性识别点突变。探针对将普通探针与区分探针结合在一起,后者与DNA芯片共价连接。普通探针通过独特的“邮政编码补充”与鉴别探针杂交。当且仅当存在突变时,区分探针3'端的等位基因特异性部分才与普通探针5'端的相邻部分共价连接。因此,在邮政编码识别后,识别目标突变的过程完全位于芯片上相应的孔中。结果,由于各种多重探针的存在而导致的交叉反应和对靶的有竞争性的竞争附着被大大地减小了。突变检测通过使用酶联测定的直接可视化进行。最初的24个探针对针对81 bp RRDR中的22个具有临床意义的突变进行了验证。鉴定了来自15个临床分离株的rpoB基因的130 bp片段,与独立测序的结果100%一致。 (C)2008 Elsevier B.V.保留所有权利。

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