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[Ru(phen)2dppz]2+ 光开关发射对离子强度、温度、DNA 序列和构象的灵敏度。

Sensitivity of [Ru(phen)2dppz]2+ light switch emission to ionic strength, temperature, and DNA sequence and conformation.

机构信息

Department of Chemistry, Imperial College London, London SW7 2AZ, United Kingdom.

出版信息

Dalton Trans. 2013 Mar 21;42(11):4081-90. doi: 10.1039/c3dt32555e. Epub 2013 Jan 25.

DOI:10.1039/c3dt32555e
PMID:23354022
Abstract

The luminescence of DNA-bound Ru(phen)(2)dppz is shown to be highly sensitive to environmental conditions such as ionic strength, temperature, and the sequence and secondary structure of the nucleic acid, although not to bulky DNA substituents in the major groove. Each enantiomer has two characteristic lifetimes with any polynucleotide and their relative amplitudes vary as a function of binding ratio. For poly(dA-dT) as a model sequence, the longer lifetime for Δ-Ru(phen)(2)dppz has been assigned to canted intercalation of the complex and the shorter lifetime is ascribed to symmetric intercalation. At a fixed binding ratio, the longer lifetime amplitude increases with increasing ionic strength, without significant change in lifetimes. Increasing temperature has a similar effect, but also affects lifetimes. In general, emission is strongest with AT-rich polynucleotides and with higher-order secondary structures, with intensity increasing as single-stranded < duplex < triplex. However, sequence-context and secondary duplex structure also influence the photophysics since emission with [poly(dA)]·[poly(dT)] is significantly higher than with poly(dA-dT) or [poly(rA)]·[poly(rU)]. The strong influence of different environmental conditions on the emission of nucleic acid-bound Ru(phen)(2)dppz reflects subtle heterogeneities that are inherent elements of DNA recognition by small molecules, amplified by large changes in photophysics caused by differential exposure of the dppz nitrogens to groove hydration.

摘要

DNA 结合的 Ru(phen)(2)dppz 的发光对环境条件(如离子强度、温度以及核酸的序列和二级结构)非常敏感,尽管对大沟中的大体积 DNA 取代基不敏感。每个对映体与任何多核苷酸都有两个特征寿命,它们的相对幅度随结合比而变化。对于 poly(dA-dT) 作为模型序列,Δ-Ru(phen)(2)dppz 的较长寿命归因于复合物的倾斜嵌入,而较短寿命则归因于对称嵌入。在固定的结合比下,较长寿命的幅度随离子强度的增加而增加,而寿命没有明显变化。升高温度具有相似的效果,但也会影响寿命。一般来说,与富含 AT 的多核苷酸和更高阶的二级结构相比,发射强度最强,强度随单链 < 双链 < 三链增加。然而,序列上下文和二级双链结构也会影响光物理性质,因为 [poly(dA)]·[poly(dT)] 的发射明显高于 poly(dA-dT) 或 [poly(rA)]·[poly(rU)]。不同环境条件对核酸结合 Ru(phen)(2)dppz 发射的强烈影响反映了小分子与 DNA 识别所固有的细微不均匀性,这些不均匀性被 dppz 氮对沟水合作用的不同暴露引起的光物理性质的巨大变化放大。

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