Intranuclear Distribution of 8-hydroxy-2'-deoxyguanosine: An Immunocytochemical StudyShinya Toyokunia, Yoko Iwasaa, Shohei Kondoa, Tomoyuki Tanakaa, Hirotomo Ochib, and Hiroshi Hiaiaa Department of Pathology and Biology of Diseases, Graduate School of Medicine, Kyoto University, Kyoto, Japan b Japan Institute for the Control of Aging, Fukuroi, Shizuoka, Japan Correspondence to: Shinya Toyokuni, Dept. of Pathology and Biology of Diseases, Graduate School of Medicine, Kyoto Univ., Yoshida-Konoe-cho, Sakyo-ku, Kyoto 606-8501, Japan.
We used immunofluorescence staining (monoclonal antibody N45.1) with cytological imprinting to study changes in the intranuclear distribution of 8-hydroxy-2'-deoxyguanosine in renal cells of male Wistar rats after oxidative stress by ferric nitrilotriacetate. In the control proximal tubule cells, small spherical signals were uniformly distributed throughout the nuclei. Under oxidative stress, immunofluorescence intensity was increased, especially near nuclear membrane. In cells with nuclear shrinkage or deformity, intense, diffuse signals throughout the nuclei were observed. Our results suggest that specific nuclear sites are vulnerable to oxidative DNA damage and that diffuse intense signals precede cell death after oxidative stress. (J Histochem Cytochem 47:833835, 1999) Key Words: 8-hydroxy-2'-deoxyguanosine, immunofluorescent staining, oxidative DNA damage, kidney, imprint cytology, ferric nitrilotriacetate
8-Hydroxy-2'-DEOXYGUANOSINE (8-OHdG), a hydroxylated product at the C-8 position of 2'-deoxyguanosine produced by reaction with ascorbic acid in the presence of oxygen was first reported by
This study was undertaken to examine the intranuclear distribution of 8-OHdG and to confirm the specificity of the antibody. To this end, a prototype free radical-induced renal tubule injury model mediated by Fe-NTA (
During prophase or prometaphase, normal spermatogonia showed 8-OHdG signals solely on the chromosomes, confirming the specificity of MAb N45.1 (Figure 1D). Because the major targets in the kidney for oxidative stress by Fe-NTA are proximal tubule (PT) cells (
Supported in part by a Grant-in-Aid for scientific research from the Ministry of Education, Science, Sports and Culture, Japan, by a grant from the Japanese Owners' Association, and by the Program for Promotion of Basic Research Activities for Innovative Biosciences. We thank James E. Strickland (NCI, NIH; Bethesda, MD) for critical reading of the manuscript. Received for publication November 9, 1998; accepted January 12, 1999.
Aburatani H, Hippo Y, Ishida T, Takashima R, Matsuba C, Kodama T, Takao M, Yasui A, Yamamoto K, Asano M (1997) Cloning and characterization of mammalian 8-hydroxyguanine- specific DNA glycosylase/apurinic, apyrimidinic lyase, a functional mutM homologue. Cancer Res 57:2151-2156 Halliwell B, Aruoma OI (1993) DNA and Free Radicals. Chichester, UK, Ellis Horwood Hattori Y, Nishigori C, Tanaka T, Uchida K, Nikaido O, Osawa T, Hiai H, Imamura S, Toyokuni S (1996) 8-Hydroxy-2'-deoxyguanosine is increased in epidermal cells of hairless mice after chronic UVB exposure. J Invest Dermatol 107:733-737[Medline] Kasai H (1997) Analysis of a form of oxidative DNA damage, 8-hydroxy-2'-deoxyguanosine, as a marker of cellular oxidative stress during carcinogenesis. Mutat Res 387:147-163[Medline]
Kasai H, Nishimura S (1984) Hydroxylation of deoxyguanosine at the C-8 position by ascorbic acid and other reducing agents. Nucleic Acids Res 12:2137-2145 Lindahl T (1993) Instability and decay of the primary structure of DNA. Nature 362:709-715[Medline] Shibutani S, Takeshita M, Grollman AP (1991) Insertion of specific bases during DNA synthesis past the oxidation-damaged base 8-oxodG. Nature 349:431-434[Medline] Toyokuni S (1996) Iron-induced carcinogenesis: the role of redox regulation. Free Rad Biol Med 20:553-566[Medline] Toyokuni S, Tanaka T, Hattori Y, Nishiyama Y, Ochi H, Hiai H, Uchida K, Osawa T (1997) Quantitative immunohistochemical determination of 8-hydroxy-2'-deoxyguanosine by a monoclonal antibody N45.1: its application to ferric nitrilotriacetate-induced renal carcinogenesis model. Lab Invest 76:365-374[Medline]
Toyokuni S, Uchida K, Okamoto K, HattoriNakakuki Y, Hiai H, Stadtman ER (1994) Formation of 4-hydroxy-2-nonenal-modified proteins in the renal proximal tubules of rats treated with a renal carcinogen, ferric nitrilotriacetate. Proc Natl Acad Sci USA 91:2616-2620
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