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一种氧代金属卟啉对人类端粒序列产生的氧化损伤。

Oxidative damage generated by an oxo-metalloporphyrin onto the human telomeric sequence.

作者信息

Vialas C, Pratviel G, Meunier B

机构信息

Laboratoire de Chimie de Coordination du CNRS, Toulouse, France.

出版信息

Biochemistry. 2000 Aug 8;39(31):9514-22. doi: 10.1021/bi000743x.

Abstract

The cationic metalloporphyrin Mn-TMPyP activated by KHSO(5) has been used as cleaver of an oligonucleotide containing the four human telomere repeats of 5'-GGGTTA. This oligonucleotide formed an intramolecular quadruplex DNA under 200 mM KCl as probed by DMS footprinting and could fold into different quadruplex structures under 200 mM NaCl. We found that the oxo-metalloporphyrin was able to mediate efficient oxidative cleavage of the quadruplex. The location of damage showed that the metalloporphyrin was able to bind to the last G-tetrad of the quadruplex structure via an external interaction. This metalloporphyrin-G-tetrad interaction needs a relatively high flexibility of the single-stranded linker regions to allow the partial stacking of the metalloporphyrin with the last G-tetrad planar structure. The oxidative damage consisted of guanine oxidation within the interacting G-tetrad together with an 1'-carbon hydroxylation of deoxyribose residues of the thymidine residues located on the neighboring single-stranded loop. So the high-valent oxo-metalloporphyrin is able to mediate both electron-abstraction or H-abstraction on G or T residues, respectively, within the DNA quadruplex target.

摘要

由过硫酸氢钾(KHSO₅)激活的阳离子金属卟啉Mn-TMPyP已被用作切割含有5'-GGGTTA四个人类端粒重复序列的寡核苷酸的工具。如通过二甲基亚砜足迹法所探测的,该寡核苷酸在200 mM KCl条件下形成了分子内四重链DNA,并且在200 mM NaCl条件下能够折叠成不同的四重链结构。我们发现,氧代金属卟啉能够介导四重链的高效氧化切割。损伤的位置表明,金属卟啉能够通过外部相互作用与四重链结构的最后一个鸟嘌呤四联体结合。这种金属卟啉-鸟嘌呤四联体相互作用需要单链连接区具有相对较高的灵活性,以使金属卟啉与最后一个鸟嘌呤四联体平面结构部分堆积。氧化损伤包括相互作用的鸟嘌呤四联体内的鸟嘌呤氧化以及位于相邻单链环上的胸腺嘧啶残基的脱氧核糖残基的1'-碳羟基化。因此,高价氧代金属卟啉能够分别介导对DNA四重链靶标内的鸟嘌呤或胸腺嘧啶残基进行电子抽取或氢抽取。

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