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通过化学发光检测溶液中的所有单碱基错配。

Detection of all single-base mismatches in solution by chemiluminescence.

作者信息

Nelson N C, Hammond P W, Matsuda E, Goud A A, Becker M M

机构信息

Gen-Probe Incorporated, San Diego, CA 92121, USA.

出版信息

Nucleic Acids Res. 1996 Dec 15;24(24):4998-5003. doi: 10.1093/nar/24.24.4998.

Abstract

A rapid in-solution method for the detection of all 12 single-base mismatches is described. The technique is based on the hybridization protection assay (HPA) format that utilizes oligonucleotide probes labeled with a highly chemiluminescent acridinium ester (AE). Hydrolysis by weak base renders AE permanently non-chemiluminescent. When an AE-labeled probe hybridizes to an exactly complementary target, AE is protected from hydrolysis relative to the unhybridized conformation. Single-base mutations in the duplex adjacent to the site of AE attachment disrupt this protection resulting in rapid AE hydrolysis and loss of chemiluminescence. The discrimination effect was seen in both DNA and RNA. Studies of Tm values revealed that this effect is not due to a decrease in the overall stability of the duplex, suggesting the AE is responding to local structural changes in the double helix induced by mismatches. Using this principle all 12 single mismatches were clearly discriminated from the corresponding matched sequences. The assay is homogeneous, simple, sensitive, applicable to both amplified and non-amplified targets, and is completed in 30-60 min. An example showing discrimination between wild-type and mutant sequences corresponding to the reverse transcriptase coding region of HIV-1 is given.

摘要

本文描述了一种用于检测所有12种单碱基错配的快速溶液内方法。该技术基于杂交保护分析(HPA)形式,利用标记有高化学发光吖啶酯(AE)的寡核苷酸探针。弱碱水解会使AE永久失去化学发光能力。当AE标记的探针与完全互补的靶标杂交时,相对于未杂交的构象,AE受到保护而不被水解。与AE连接位点相邻的双链体中的单碱基突变会破坏这种保护,导致AE快速水解并失去化学发光。在DNA和RNA中均观察到了这种区分效应。对熔解温度(Tm)值的研究表明,这种效应并非由于双链体整体稳定性的降低,这表明AE对由错配引起的双螺旋局部结构变化做出反应。利用这一原理,所有12种单错配均能与相应的匹配序列清晰区分。该分析方法是均相的、简单的、灵敏的,适用于扩增和未扩增的靶标,并且在30 - 60分钟内即可完成。文中给出了一个区分HIV - 1逆转录酶编码区野生型和突变型序列的实例。

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