New functions of XPC in the protection of human skin cells from oxidative damage

被引:202
作者
D'Errico, Mariarosaria
Parlanti, Eleonora
Teson, Massimo
de Jesus, Bruno M. Bernardes
Degan, Paolo
Calcagnile, Angelo
Jaruga, Pawel
Bjoras, Magnar
Crescenzi, Marco
Pedrini, Antonia M.
Egly, Jean-Marc
Zambruno, Giovanna
Stefanini, Miria
Dizdaroglu, Miral
Dogliotti, Eugenia
机构
[1] Ist Super Sanita, Dept Environm & Primary Prevent, I-00161 Rome, Italy
[2] IRCCS, Ist Dermopat Immacolata, Lab Mol & Cell Biol, Rome, Italy
[3] CNRS, INSERM, Inst Genet & Biol Mol & Cellulaire, Illkirch Graffenstaden, France
[4] CU, Strasbourg, France
[5] Ist Nazl Ric Canc, Dept Translat Oncol, I-16132 Genoa, Italy
[6] Univ Maryland Baltimore Cty, Dept Chem & Biochem Engn, Baltimore, MD 21228 USA
[7] NIST, Chem Sci & Technol Lab, Gaithersburg, MD 20899 USA
[8] Univ Oslo, Rikshosp Radiumhosp HF, Dept Mol Biol, Inst Med Microbiol, Oslo, Norway
[9] Univ Oslo, Rikshosp Radiumhosp HF, Ctr Mol Biol & Neurosci, Oslo, Norway
[10] CNR, Ist Genet Mol, I-27100 Pavia, Italy
关键词
cancer; DNA repair; keratinocytes; oxidative DNA damage; xeroderma pigmentosum;
D O I
10.1038/sj.emboj.7601277
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
Xeroderma pigmentosum (XP) C is involved in the recognition of a variety of bulky DNA-distorting lesions in nucleotide excision repair. Here, we show that XPC plays an unexpected and multifaceted role in cell protection from oxidative DNA damage. XP-C primary keratinocytes and fibroblasts are hypersensitive to the killing effects of DNA-oxidizing agents and this effect is reverted by expression of wild-type XPC. Upon oxidant exposure, XP-C primary keratinocytes and fibroblasts accumulate 8,5'-cyclopurine 2'-deoxynucleosides in their DNA, indicating that XPC is involved in their removal. In the absence of XPC, a decrease in the repair rate of 8-hydroxyguanine (8-OH-Gua) is also observed. We demonstrate that XPC-HR23B complex acts as cofactor in base excision repair of 8-OH-Gua, by stimulating the activity of its specific DNA glycosylase OGG1. In vitro experiments suggest that the mechanism involved is a combination of increased loading and turnover of OGG1 by XPC-HR23B complex. The accumulation of endogenous oxidative DNA damage might contribute to increased skin cancer risk and account for internal cancers reported for XP-C patients.
引用
收藏
页码:4305 / 4315
页数:11
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