An Experimental Population Study of Nucleotide Excision Repair as a Risk Factor for UVB-induced Melanoma

被引:6
作者
Fernandez, Andre A. [1 ]
Garcia, Rachel [1 ]
Paniker, Lakshmi [1 ]
Trono, David [1 ]
Mitchell, David L. [1 ]
机构
[1] Univ Texas MD Anderson Canc Ctr, Dept Carcinogenesis, Smithville, TX USA
关键词
ULTRAVIOLET-B RADIATION; DNA-REPAIR; CUTANEOUS MELANOMA; MALIGNANT-MELANOMA; HYBRID FISH; SKIN-CANCER; XIPHOPHORUS; DAMAGE; LIGHT; SENSITIVITY;
D O I
10.1111/j.1751-1097.2010.00875.x
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
Nucleotide excision repair (NER) is the primary defense against the DNA damage implicit in skin cancer formation and is negatively affected by chronic exposure to UVB radiation. However, in situ and in vitro studies consistently yield equivocal results when addressing individual DNA repair capacity and melanoma susceptibility. The primary objective of this study was to determine if individual global NER capacity is a risk factor for melanoma formation in a prominent UVB-inducible melanoma model, hybrid Xiphophorus fishes. After neonatal UVB irradiation, adult tumor-bearing and tumor-free fish were given a challenge UVB dose and (6-4) photoproduct repair was quantified in individual fish at 24 h using radioimmunoassay. Despite considerable inter-individual variation in repair capacity, ranging from 13% to 91%, we found no difference in mean NER capacity between fish with and without melanomas, thus detaching global NER from melanomagenesis. Furthermore, despite epidemiological data indicating that sex and age are important risk factors underlying melanoma susceptibility, we found no difference in mean NER rates among the sexes or as a function of age. We conclude with a discussion of the apparent paradox of how inter-individual variation in NER is not a risk factor given the clear evidence that DNA damage underlies melanoma susceptibility.
引用
收藏
页码:335 / 341
页数:7
相关论文
共 45 条
[1]   Malignant melanoma: modern black plague and genetic black box [J].
Chin, L ;
Merlino, G ;
DePinho, RA .
GENES & DEVELOPMENT, 1998, 12 (22) :3467-3481
[2]  
CLEAVER JE, 2010, CANC MED, P262
[3]   DNA base excision repair as a biomarker in molecular epidemiology studies [J].
Collins, Andrew R. ;
Gaivao, Isabel .
MOLECULAR ASPECTS OF MEDICINE, 2007, 28 (3-4) :307-322
[4]   Distinct sets of genetic alterations in melanoma [J].
Curtin, JA ;
Fridlyand, J ;
Kageshita, T ;
Patel, HN ;
Busam, KJ ;
Kutzner, H ;
Cho, KH ;
Aiba, S ;
Bröcker, EB ;
LeBoit, PE ;
Pinkel, D ;
Bastian, BC .
NEW ENGLAND JOURNAL OF MEDICINE, 2005, 353 (20) :2135-2147
[5]   Nucleotide excision repair and human syndromes [J].
de Boer, J ;
Hoeijmakers, JHJ .
CARCINOGENESIS, 2000, 21 (03) :453-460
[6]   Ultraviolet B but not ultraviolet A radiation initiates melanoma [J].
De Fabo, EC ;
Noonan, FP ;
Fears, T ;
Merlino, G .
CANCER RESEARCH, 2004, 64 (18) :6372-6376
[7]  
Desai Anu, 2006, Sci Aging Knowledge Environ, V2006, ppe13, DOI 10.1126/sageke.2006.9.pe13
[8]   Similar Nucleotide Excision Repair Capacity in Melanocytes and Melanoma Cells [J].
Gaddameedhi, Shobhan ;
Kemp, Michael G. ;
Reardon, Joyce T. ;
Shields, Janiel M. ;
Smith-Roe, Stephanie L. ;
Kaufmann, William K. ;
Sancar, Aziz .
CANCER RESEARCH, 2010, 70 (12) :4922-4930
[9]   Comet assay-based methods for measuring DNA repair in vitro; estimates of inter- and intra-individual variation [J].
Gaivao, Isabel ;
Piasek, Anita ;
Brevik, Asgeir ;
Shaposhnikov, Sergey ;
Collins, Andrew R. .
CELL BIOLOGY AND TOXICOLOGY, 2009, 25 (01) :45-52
[10]  
Gordon M, 1927, GENETICS, V12, P253