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在DNA双链支架上进行非对映化学控制的卟啉二聚体形成。

Diastereochemically controlled porphyrin dimer formation on a DNA duplex scaffold.

作者信息

Endo Masayuki, Fujitsuka Mamoru, Majima Tetsuro

机构信息

The Institute of Scientific and Industrial Research, Osaka University, 8-1 Mihogaoka, Ibaraki, Osaka 567-0047, Japan.

出版信息

J Org Chem. 2008 Feb 1;73(3):1106-12. doi: 10.1021/jo7025004. Epub 2008 Jan 10.

Abstract

DNA-porphyrin conjugates were designed and synthesized for the preparation of the conformationally controlled porphyrin dimer structures constructed on a d(GCGTATACGC)2. Porphyrin derivatives were introduced to the central TATpA sequence where p represents the phosphoramidate for the attachment of the free-base porphyrin (FbP) and zinc-coordinated porphyrin (ZnP), which allows contact of the two porphyrins in the minor groove. The porphyrin dimers were characterized using CD, UV-vis, steady-state, and time-resolved fluorescence spectroscopies, indicating that the porphyrins form face-to-face conformations. Also the co-facial conformation was confirmed by comparison with spectra of the non-self-complementary duplex containing one porphyrin moiety. Introduction of zinc into porphyrin moiety destabilized the duplex formation. Two diastereomers showed different thermal stabilities and affected the conformations of porphyrin dimers. The temperature-dependent assembly and the conformational change of the porphyrin dimer on the duplex DNA were observed in the UV-vis spectra, indicating that the dynamic movement of the porphyrin dimer occurs on the duplex. The results indicate that the porphyrin dimers of DNA-FbP conjugates are overlapped clockwise and are located in the minor groove of the usual B-form DNA backbone. The interaction and conformation of two porphyrin moieties are controlled by the following three factors: (1) temperature change during and after formation of the duplex porphyrins at lower temperature; (2) diastereochemistry of the phosphoramidates where porphyrins are connected via a linker; and (3) zinc ion coordination that destabilizes the interaction of porphyrins as well duplex formation.

摘要

设计并合成了DNA-卟啉共轭物,用于制备基于d(GCGTATACGC)2构建的构象可控的卟啉二聚体结构。将卟啉衍生物引入中央TATpA序列,其中p代表用于连接游离碱卟啉(FbP)和锌配位卟啉(ZnP)的氨基磷酸酯,这使得两个卟啉能够在小沟中接触。使用圆二色光谱(CD)、紫外可见光谱、稳态荧光光谱和时间分辨荧光光谱对卟啉二聚体进行了表征,结果表明卟啉形成了面对面的构象。通过与含有一个卟啉部分的非自互补双链体的光谱进行比较,也证实了共面构象。将锌引入卟啉部分会使双链体形成不稳定。两种非对映异构体表现出不同的热稳定性,并影响卟啉二聚体的构象。在紫外可见光谱中观察到双链DNA上卟啉二聚体的温度依赖性组装和构象变化,表明卟啉二聚体在双链上发生动态移动。结果表明,DNA-FbP共轭物的卟啉二聚体顺时针重叠,位于普通B型DNA主链的小沟中。两个卟啉部分的相互作用和构象受以下三个因素控制:(1)在较低温度下形成双链卟啉期间和之后的温度变化;(2)卟啉通过连接子连接的氨基磷酸酯的非对映化学;(3)锌离子配位,其使卟啉之间的相互作用以及双链体形成不稳定。

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