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DNA氧化中的氧化还原途径:钌(IV)氧代衍生物对鸟嘌呤和糖氧化的动力学研究。

Redox pathways in DNA oxidation: kinetic studies of guanine and sugar oxidation by para-substituted derivatives of oxoruthenium(IV).

作者信息

Farrer B T, Thorp H H

机构信息

Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599-3290, USA.

出版信息

Inorg Chem. 2000 Jan 10;39(1):44-9. doi: 10.1021/ic990833u.

Abstract

The oxidation of nucleotides and DNA by a series of complexes based on Ru(tpy)(bpy)O2+ (1) was investigated (tpy = 2,2':6',2"-terpyridine; bpy = 2,2'-bipyridine). These complexes were substituted with electron-donating or-withdrawing substituents in the para positions of the polypyridyl ligands so that the oxidation potentials of the complexes were affected but the reaction trajectory of the oxo ligand with DNA was the same throughout the series. The prepared complexes were (with E1/2(III/II) and E1/2(IV/III) values in volts versus Ag/AgCl) Ru(4'-EtO-tpy)(bpy)O2+ (2; 0.47, 0.60), Ru(4'-Cl-tpy)(bpy)O2+ (3; 0.55, 0.63), Ru(tpy)(4,4'-Me2-bpy)O2+ (4; 0.48, 0.62), and Ru(tpy)(4,4'-Cl2-bpy)O2+ (5; 0.58, 0.63). The complexes oxidized deoxycytosine 5'-monophosphate at the sugar moiety (k = 0.24-0.47 M-1 s-1) and guanosine 5'-monophosphate at the base moiety (k = 6.1-15 M-1 s-1). The rate constants increase across these ranges in the order 3 > 1 > 4 > 2, which is the same order as the redox potentials of the complexes. The effect of the base on these reactions was also studied, and xanthine was found to react with 1 much faster than guanine while hypoxanthine was less reactive than the sugar moiety. The complexes all oxidized oligonucleotides to generate base-labile lesions at guanine and a combination of spontaneous and base-labile scission at the sugar functionalities. The selectivity of cleavage in duplex and single-stranded DNA was not a strong function of the substituents on the metal complex.

摘要

研究了基于Ru(tpy)(bpy)O2+ (1)的一系列配合物(tpy = 2,2':6',2"-三联吡啶;bpy = 2,2'-联吡啶)对核苷酸和DNA的氧化作用。这些配合物在多吡啶配体的对位被供电子或吸电子取代基取代,从而影响配合物的氧化电位,但整个系列中氧代配体与DNA的反应轨迹相同。制备的配合物(相对于Ag/AgCl的E1/2(III/II)和E1/2(IV/III)值以伏特为单位)为Ru(4'-EtO-tpy)(bpy)O2+ (2; 0.47, 0.60)、Ru(4'-Cl-tpy)(bpy)O2+ (3; 0.55, 0.63)、Ru(tpy)(4,4'-Me2-bpy)O2+ (4; 0.48, 0.62)和Ru(tpy)(4,4'-Cl2-bpy)O2+ (5; 0.58, 0.63)。这些配合物在糖部分氧化脱氧胞苷5'-单磷酸(k = 0.24 - 0.47 M-1 s-1),在碱基部分氧化鸟苷5'-单磷酸(k = 6.1 - 15 M-1 s-1)。速率常数在这些范围内按3 > 1 > 4 > 2的顺序增加,这与配合物的氧化还原电位顺序相同。还研究了碱基对这些反应的影响,发现黄嘌呤与1的反应比鸟嘌呤快得多,而次黄嘌呤的反应性低于糖部分。这些配合物都氧化寡核苷酸,在鸟嘌呤处产生碱基不稳定损伤,并在糖官能团处产生自发和碱基不稳定断裂的组合。双链和单链DNA中切割的选择性不是金属配合物上取代基的强函数。

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