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探索DNA荧光染料噻唑橙的碱基对特异性光学性质。

Exploring base-pair-specific optical properties of the DNA stain thiazole orange.

作者信息

Jarikote Dilip Venkatrao, Krebs Nils, Tannert Sebastian, Röder Beate, Seitz Oliver

机构信息

Institut für Chemie, Humboldt-Universität zu Berlin, Brook-Taylor-Str. 2, 12489 Berlin, Germany.

出版信息

Chemistry. 2007;13(1):300-10. doi: 10.1002/chem.200600699.

Abstract

Double-stranded DNA offers multiple binding sites to DNA stains. Measurements of noncovalently bound dye-nucleic acid complexes are, necessarily, measurements of an ensemble of chromophores. Thus, it is difficult to assign fluorescence properties to base-pair-specific binding modes of cyanine dyes or, vice versa, to obtain information about the local environment of cyanines in nucleic acids by using optical spectroscopy. The feasibility to stain DNA and simultaneously probe local perturbations by optical spectroscopy would be a valuable asset to nucleic acid research. So-called FIT probes (forced intercalation probes) were used to pinpoint the location of the DNA stain thiazole orange (TO) in PNADNA duplexes. A detailed analysis of the base-pair dependence of optical properties is provided and enforced binding of TO is compared with "classical" binding of free TO-PRO1. UV-visible absorbance, circular dichroism (CD) and fluorescence spectroscopy, and melting-curve analyses confirmed site-specific TO intercalation. Thiazole orange exhibited base-specific responses that are not observed in noncovalent dye-nucleic acid complexes, such as an extraordinary dependence of the TO extinction coefficient (+/-60 % variation of the averaged epsilon(max) of 57,000 M(-1) cm(-1)) on nearest-neighbor base pairs. TO signals hybridization, as shown by increases in the steady-state fluorescence emission. Studies of TO fluorescence lifetimes in FIT-PNA and in DNADNA and PNADNA complexes highlighted four different fluorescence-decay processes that may be closed or opened in response to matched or single-mismatched hybridization. A very fast decay process (0.04-0.07 ns) and a slow decay process (2.33-3.95 ns) provide reliable monitors of hybridization, and the opening of a fast decay channel (0.22-0.48 ns) that resulted in an attenuation of the fluorescence emission is observed upon the formation of mismatched base pairs.

摘要

双链DNA为DNA染色剂提供了多个结合位点。对非共价结合的染料 - 核酸复合物的测量必然是对一群发色团的测量。因此,很难将荧光特性归因于花菁染料的碱基对特异性结合模式,反之亦然,即通过光谱学获得核酸中花菁局部环境的信息。用光学光谱法对DNA进行染色并同时探测局部扰动的可行性,对核酸研究来说将是一项宝贵的资产。所谓的FIT探针(强制插入探针)被用于确定DNA染色剂噻唑橙(TO)在肽核酸 - DNA双链体中的位置。提供了对光学性质的碱基对依赖性的详细分析,并将TO的强制结合与游离TO - PRO1的“经典”结合进行了比较。紫外 - 可见吸收光谱、圆二色性(CD)和荧光光谱以及熔解曲线分析证实了TO的位点特异性插入。噻唑橙表现出在非共价染料 - 核酸复合物中未观察到的碱基特异性响应,例如TO消光系数(平均ε(max)为57,000 M(-1) cm(-1),变化±60%)对相邻碱基对的异常依赖性。TO显示出杂交信号,如稳态荧光发射增加所示。对FIT - PNA以及DNA - DNA和肽核酸 - DNA复合物中TO荧光寿命的研究突出了四种不同的荧光衰减过程,这些过程可能会根据匹配或单碱基错配杂交而关闭或开启。一个非常快速的衰减过程(0.04 - 0.07 ns)和一个缓慢的衰减过程(2.33 - 3.95 ns)提供了杂交的可靠监测指标,并且在形成错配碱基对时观察到一个快速衰减通道(0.22 - 0.48 ns)的开启,这导致了荧光发射的衰减。

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