Oxygen independent DNA interstrand cross-link formation by a nucleotide radical

被引:83
作者
Hong, IS [1 ]
Ding, H [1 ]
Greenberg, MM [1 ]
机构
[1] Johns Hopkins Univ, Dept Chem, Baltimore, MD 21218 USA
关键词
D O I
10.1021/ja0563657
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A 5-(2'-Deoxyuridinyl)methyl radical (1) was independently generated from three photochemical precursors and is the first example of a DNA radical that forms interstrand cross-links. Oxygen labeling experiments support generation of 1 by all precursors. Interstrand cross-links are produced upon irradiation of DNA containing any of the precursors. Cross-linking occurs via reaction with the opposing 2'deoxyadenosine and is independent of O-2. The independence of cross-link formation on O-2 is explained by kinetic analysis, which shows that the radical reacts reversibly with O-2. Examination of the effects of glutathione on cross-link formation under anaerobic conditions suggests that adoption of the synconformation by 1 is the rate-limiting step in the process. Interstrand cross-link formation is reversible in the presence of a good nucleophile. The stability of the interstrand cross-link suggests that the isolated molecule is a rearrangement product of that formed in solution. The rearrangement is a consequence of the isolation procedure but also occurs slowly in solution. Oxygen independent cross-link formation may be useful for the purposeful damage of DNA in hypoxic tumor cells, where O-2 is deficient.
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页码:485 / 491
页数:7
相关论文
共 38 条
[1]   A comparative photomechanistic study (spin trapping, EPR spectroscopy, transient kinetics, photoproducts) of nucleoside oxidation (dG and 8-oxodG) by triplet-excited acetophenones and by the radicals generated from α-oxy-substituted derivatives through Norrish-Type I cleavage [J].
Adam, W ;
Arnold, MA ;
Nau, WM ;
Pischel, U ;
Saha-Möller, CR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (15) :3893-3904
[2]   Independent generation and reactivity of 2′-deoxy-5-methyleneuridin-5-yl, a significant reactive intermediate produced from thymidine as a result of oxidative stress [J].
Anderson, AS ;
Hwang, JT ;
Greenberg, MM .
JOURNAL OF ORGANIC CHEMISTRY, 2000, 65 (15) :4648-4654
[3]   Exploiting tumour hypoxia in cancer treatment [J].
Brown, JM ;
William, WR .
NATURE REVIEWS CANCER, 2004, 4 (06) :437-447
[4]   Oxidative nucleobase modifications leading to strand scission [J].
Burrows, CJ ;
Muller, JG .
CHEMICAL REVIEWS, 1998, 98 (03) :1109-1151
[5]   Tandem lesions are the major products resulting from a pyrimidine nucleobase radical [J].
Carter, KN ;
Greenberg, MM .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2003, 125 (44) :13376-13378
[6]   Chemistry of glycosylases and endonucleases involved in base-excision repair [J].
David, SS ;
Wiliams, SD .
CHEMICAL REVIEWS, 1998, 98 (03) :1221-1261
[7]   The age of cancer [J].
DePinho, RA .
NATURE, 2000, 408 (6809) :248-254
[8]   Free radical-induced damage to DNA: Mechanisms and measurement [J].
Dizdaroglu, M ;
Jaruga, P ;
Birincioglu, M ;
Rodriguez, H .
FREE RADICAL BIOLOGY AND MEDICINE, 2002, 32 (11) :1102-1115
[9]  
Douki T, 1999, INT J RADIAT BIOL, V75, P571
[10]   Repair of DNA interstrand cross-links [J].
Dronkert, MLG ;
Kanaar, R .
MUTATION RESEARCH-DNA REPAIR, 2001, 486 (04) :217-247