Hepatitis C virus induces oxidative stress, DNA damage and modulates the DNA repair enzyme NEIL1

被引:136
作者
Pal, Sampa [1 ]
Polyak, Stephen J.
Bano, Nazneen
Qiu, Wan Chong
Carithers, Robert L. [2 ]
Shuhart, Margaret [2 ]
Gretch, David R. [2 ]
Das, Aditi [3 ]
机构
[1] Univ Washington, Dept Lab Med, Med Ctr, Seattle, WA 98195 USA
[2] Univ Washington, Dept Med, Seattle, WA 98195 USA
[3] Univ Texas MD Anderson Canc Ctr, Dept Urol, Houston, TX 77030 USA
关键词
DNA glycosylase; hepatitis C virus; interferon; N-acetyl cystein; reactive oxygen species; BASE EXCISION-REPAIR; MAMMALIAN-CELLS; CORE PROTEIN; GLYCOSYLASE NEIL1; ACCUMULATION; DISEASE; MICE; 8-HYDROXYGUANINE; IDENTIFICATION; ACTIVATION;
D O I
10.1111/j.1440-1746.2009.06128.x
中图分类号
R57 [消化系及腹部疾病];
学科分类号
100201 [内科学];
摘要
Background and Aims: Hepatitis C virus (HCV)-induced chronic inflammation may induce oxidative stress which could compromise the repair of damaged DNA, rendering cells more susceptible to spontaneous or mutagen-induced alterations, the underlying cause of liver cirrhosis and hepatocellular carcinoma. In the current study we examined the induction of reactive oxygen species (ROS) resulting from HCV infection and evaluated its effect on the host DNA damage and repair machinery. Methods: HCV infected human hepatoma cells were analyzed to determine (i) ROS, (ii) 8-oxoG and (iii) DNA glycosylases NEIL1, NEIL2, OGG1. Liver biopsies were analyzed for NEIL1. Results: Human hepatoma cells infected with HCV JFH-1 showed 30-60-fold increases in ROS levels compared to uninfected cells. Levels of the oxidatively modified guanosine base 8-oxoguanine (8-oxoG) were significantly increased sixfold in the HCV-infected cells. Because DNA glycosylases are the enzymes that remove oxidized nucleotides, their expression in HCV-infected cells was analyzed. NEIL1 but not OGG1 or NEIL2 gene expression was impaired in HCV-infected cells. In accordance, we found reduced glycosylase (NEIL1-specific) activity in HCV-infected cells. The antioxidant N-acetyl cystein (NAC) efficiently reversed the NEIL1 repression by inhibiting ROS induction by HCV. NEIL1 expression was also partly restored when virus-infected cells were treated with interferon (IFN). HCV core and to a lesser extent NS3-4a and NS5A induced ROS, and downregulated NEIL1 expression. Liver biopsy specimens showed significant impairment of NEIL1 levels in HCV-infected patients with advanced liver disease compared to patients with no disease. Conclusion: Collectively, the data indicate that HCV induction of ROS and perturbation of NEIL1 expression may be mechanistically involved in progression of liver disease and suggest that antioxidant and antiviral therapies can reverse these deleterious effects of HCV in part by restoring function of the DNA repair enzyme/s.
引用
收藏
页码:627 / 634
页数:8
相关论文
共 36 条
[1]
Impaired base excision repair and accumulation of oxidative base lesions in CD4+ T cells of HIV-infected patients [J].
Aukrust, P ;
Luna, L ;
Ueland, T ;
Johansen, RF ;
Müller, F ;
Froland, SS ;
Seeberg, EC ;
Bjorås, M .
BLOOD, 2005, 105 (12) :4730-4735
[2]
CHRONIC HEPATITIS - AN UPDATE ON TERMINOLOGY AND REPORTING [J].
BATTS, KP ;
LUDWIG, J .
AMERICAN JOURNAL OF SURGICAL PATHOLOGY, 1995, 19 (12) :1409-1417
[3]
Oxidative DNA damage: mechanisms, mutation, and disease [J].
Cooke, MS ;
Evans, MD ;
Dizdaroglu, M ;
Lunec, J .
FASEB JOURNAL, 2003, 17 (10) :1195-1214
[4]
Induction of the human oxidized base-specific DNA glycosylase NEIL1 by reactive oxygen species [J].
Das, A ;
Hazra, TK ;
Boldogh, I ;
Mitra, S ;
Bhakat, KK .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (42) :35272-35280
[5]
The human Werner syndrome protein stimulates repair of oxidative DNA base damage by the DNA glycosylase NEIL1 [J].
Das, Aditi ;
Boldogh, Istvan ;
Lee, Jae Wan ;
Harrigan, Jeanine A. ;
Hegde, Muralidhar L. ;
Piotrowski, Jason ;
Pinto, Nadja de Souza ;
Ramos, William ;
Greenberg, Marc M. ;
Hazra, Tapas K. ;
Mitra, Sankar ;
Bohr, Vilhelm A. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (36) :26591-26602
[6]
Projecting future complications of chronic hepatitis C in the United States [J].
Davis, GL ;
Albright, JE ;
Cook, SF ;
Rosenberg, DM .
LIVER TRANSPLANTATION, 2003, 9 (04) :331-338
[7]
REPAIR OF OXIDATIVE DAMAGE TO DNA - ENZYMOLOGY AND BIOLOGY [J].
DEMPLE, B ;
HARRISON, L .
ANNUAL REVIEW OF BIOCHEMISTRY, 1994, 63 :915-948
[8]
FLORA DS, 2001, CARCINOGENESIS, V22, P999
[9]
DNA repair: From molecular mechanism to human disease [J].
Friedberg, Errol C. ;
Aguilera, Andres ;
Gellert, Martin ;
Hanawalt, Philip C. ;
Hays, John B. ;
Lehmann, Alan R. ;
Lindahl, Tomas ;
Lowndes, Noel ;
Sarasin, Alain ;
Wood, Richard D. .
DNA REPAIR, 2006, 5 (08) :986-996
[10]
Evasion of intracellular host defence by hepatitis C virus [J].
Gale, M ;
Foy, EM .
NATURE, 2005, 436 (7053) :939-945