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未标记核酸中链交换反应的光吸收测定法。

Optical absorption assay for strand-exchange reactions in unlabeled nucleic acids.

作者信息

Kankia Besik I

机构信息

Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Nucleic Acids Res. 2004 Nov 1;32(19):e154. doi: 10.1093/nar/gnh152.

Abstract

The nucleic acid exchange reaction is a common feature for genetic recombination, DNA replication and transcription. Due to the fact that in the strand-exchange reactions the reactant and product molecules have similar or identical nucleotide sequences, the reaction is undetectable. As a rule, the nucleic acids with radioactive or fluorescence labels are used in such studies. Besides the fact that the labels can perturb the reaction and pose a health risk to the investigators, the assays usually involve extra experimental steps: quenching the reaction, separation, visualization and quantification of the products. Here, we describe a straightforward, direct and precise method to study strand-exchange reaction of unlabeled nucleic acids by real-time measurements of optical absorption. The method takes advantage of the property of some guanine-rich oligonucleotides to adopt monomolecular quadruplex conformation in the presence of certain cations. The conformation is characterized by significant absorption in long-wavelength range of the ultraviolet region where usually other secondary structures are transparent. The 'signal' oligonucleotide is incorporated into reactant duplex by annealing with target sequence. Adding the replacement sequence initiates the release of the 'signal' oligonucleotide into solution, which is accompanied by ultraviolet absorption in long-wavelength range.

摘要

核酸交换反应是基因重组、DNA复制和转录的一个共同特征。由于在链交换反应中,反应物和产物分子具有相似或相同的核苷酸序列,该反应难以检测。通常,此类研究中使用带有放射性或荧光标记的核酸。除了标记可能干扰反应并对研究人员构成健康风险外,这些测定通常还涉及额外的实验步骤:淬灭反应、产物的分离、可视化和定量。在此,我们描述了一种直接、精准的方法,通过实时测量光吸收来研究未标记核酸的链交换反应。该方法利用了一些富含鸟嘌呤的寡核苷酸在特定阳离子存在下形成单分子四链体构象的特性。这种构象的特征是在紫外区域的长波长范围内有显著吸收,而通常其他二级结构在此区域是透明的。“信号”寡核苷酸通过与靶序列退火而掺入反应物双链体中。加入置换序列会引发“信号”寡核苷酸释放到溶液中,同时伴随着长波长范围内的紫外吸收。

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