Endogenous DNA damage clusters in human skin, 3-D model, and cultured skin cells

被引:34
作者
Bennett, PV [1 ]
Cuomo, NL [1 ]
Paul, S [1 ]
Tafrov, ST [1 ]
Sutherland, BM [1 ]
机构
[1] Brookhaven Natl Lab, Dept Biol, Bldg 463, Upton, NY 11973 USA
关键词
endogenous DNA damage; DNA damage clusters; human skin; 3-D skin model; primary human cells; free radicals;
D O I
10.1016/j.freeradbiomed.2005.05.008
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Clustered damages-two or more oxidized bases, abasic sites, or strand breaks on opposing DNA strands within a few helical turns-are formed in DNA by ionizing radiation. Clusters are difficult for cells to repair and thus pose significant challenges to genomic integrity. Although endogenous clusters were found in some permanent human cell lines, it was not known if clusters accumulated in human tissues or primary cells. Using high-sensitivity gel electrophoresis, electronic imaging, and number average length analysis, we determined endogenous cluster levels in DNA from human skin, a 3-D skin model, and primary cultured skin cells. DNA from dermis and epidermis of human skin contained extremely low levels of endogenous clusters (a few per gigabase). However, cultured skin fibroblasts and keratinocytes-whether in monolayer cultures or in 3-D model skin cultures-accumulated oxidized pyrimidine, oxidized purine, and abasic clusters. The levels of endogenous clusters were decreased by growing cells in the presence of selenium or by increasing cellular levels of Fpg protein, presumably by increasing processing of clustered damages. These results imply that the levels of endogenous clusters can be affected by the cells' external environment and their ability to deal with DNA damage. Published by Elsevier Inc.
引用
收藏
页码:832 / 839
页数:8
相关论文
共 49 条
[1]   OXIDANTS, ANTIOXIDANTS, AND THE DEGENERATIVE DISEASES OF AGING [J].
AMES, BN ;
SHIGENAGA, MK ;
HAGEN, TM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (17) :7915-7922
[2]   DNA damage from micronutrient deficiencies is likely to be a major cause of cancer [J].
Ames, BN .
MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS, 2001, 475 (1-2) :7-20
[3]   Are endogenous clustered DNA damages induced in human cells? [J].
Bennett, PV ;
Cintron, NS ;
Gros, L ;
Laval, J ;
Sutherland, BM .
FREE RADICAL BIOLOGY AND MEDICINE, 2004, 37 (04) :488-499
[4]   DNA damage and its processing. Relation to human disease [J].
Bohr, VA .
JOURNAL OF INHERITED METABOLIC DISEASE, 2002, 25 (03) :215-222
[5]   Radiation-induced damage to cellular DNA: measurement and biological role [J].
Cadet, J ;
Douki, T ;
Gasparutto, D ;
Ravanat, JL .
RADIATION PHYSICS AND CHEMISTRY, 2005, 72 (2-3) :293-299
[6]   Reactivity of human apurinic/apyrimidinic endonuclease and Escherichia coli exonuclease III with bistranded abasic sites in DNA [J].
Chaudhry, MA ;
Weinfeld, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (25) :15650-15655
[7]  
CHAUDHRY MA, 1995, J MOL BIOL, V249, P914
[8]   Clustered DNA damage, influence on damage excision by XRS5 nuclear extracts and Escherichia coli Nth and Fpg proteins [J].
David-Cordonnier, MH ;
Laval, J ;
O'Neill, P .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (16) :11865-11873
[9]   Dynamics and diversions in base excision DNA repair of oxidized abasic lesions [J].
Demple, B ;
DeMott, MS .
ONCOGENE, 2002, 21 (58) :8926-8934
[10]   Genetic alterations and DNA repair in human carcinogenesis [J].
Dixon, K ;
Kopras, E .
SEMINARS IN CANCER BIOLOGY, 2004, 14 (06) :441-448