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Research Article

A new Schiff base copper (II) complex derived from estrone and d-glucosamine: Synthesis, characterization and its interaction with DNA

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Pages 125-130 | Received 23 Sep 2007, Accepted 14 Nov 2007, Published online: 20 Oct 2008

References

  • DB Hall, RE Holmlin, and JK Barton. (1996). Oxidative DNA damage through long-range electron transfer. Nature 382:731–735.
  • KE Erkkila, DT Odom, and JK Barton. (1999). Recognition and reaction of metallointercalators with DNA. Chem Rev 99:2777–2796.
  • B Lippert. (2000). Multiplicity of metal ion binding patterns to nucleobases. Coord Chem Rev 200:487–516.
  • A Sreedhara, and JA Cowan. (2001). Catalytic hydrolysis of DNA by metal ions and complexes. J Biol Inorg Chem 6:337–347.
  • C Liu, M Wang, T Zhang, and H Sun. (2004). DNA hydrolysis promoted by di-and multi-nuclear metal complexes. Coord Chem Rev 248:147–156.
  • DS Sigman, TW Bruice, A Mazumder, and CL Sutton. (1992). Targeted chemical nucleases. Acc Chem Res 26:98–104.
  • JC Babrowaik, B Ward, and G Goodisman. (1989). Quantitative footprinting analysis using a DNA-cleaving metalloporphyrin complex. Biochemistry 28:3314–3322.
  • CJ Burrows, and SE Rokita. (1994). Recognition of guanine structure in nucleic acids by nickel complexes. Acc Chem Res 27:295–301.
  • G Pratvicl, J Bernadou, and B Mcunicr. (1998). DNA and RNA cleavage by metal complexes. Adv Inorg Chem 45:251–312.
  • M Shionoya, T Ikeda, E Kimura, and M Shiro. (1994). Novel “multipoint” molecular recognition of nucleobases by a new Zinc(II) complex of acridine-pendant cyclen (cyclen = 1,4,7,10-Tetraazacyclododecane). J Am Chem Soc 116:3848–3859.
  • DM Epstein, LL Chappell, H Khalili, RM Supkowski, WD Horrocks, and JR Morrow. (2000). Eu(III) macrocyclic complexes promote cleavage of and bind to models for the 5′-cap of mRNA. Effect of pendent group and a second metal ion. Inorg Chem 39:2130–2134.
  • XY Wang, J Zhang, K Li, N Jiang, SY Chen, HH Lin, Y Huang, LJ Ma, and XQ Yu. (2006). Synthesis and DNA cleavage activities of mononuclear macrocyclic polyamine zinc(II), copper(II), cobalt(II) complexes which linked with uracil. Bioorg Med Chem 14:6745–6751.
  • YG Fang, J Zhang, SY Cheng, N Jiang, HH Lin, Y Zhang, and XQ Yu. (2007). Chiral multinuclear macrocyclic polyamine complexes: Synthesis, characterization and their interaction with plasmid DNA. Bioorg Med Chem 15:696–701.
  • AS Sitlani, EC Long, AM Pyle, and JK Barton. (1992). DNA photocleavage by phenanthrenequinone diimine complexes of rhodium(III): Shape-selective recognition and reaction. J Am Chem Soc 114:2303–2312.
  • DC Crans, AD Keramidas, HH Lity, OP Anderson, MM Miller, LM Lemoine, SP Williams, M Vandenberg, AJ Rossomando, and LJ Sweet. (1997). Synthesis, structure, and biological activity of a new insulinomimetic peroxovanadium compound: Bisperoxovanadium imidazole monoanion. J Am Chem Soc 119:5447–5448.
  • DJ Gravert, and JH Griffin. (1996). Steric and electronic effects, enantiospecificity and reactive orientation in DNA binding/cleaving by substituted derivatives of [MnIIIsalen]+. Inorg Chem 35:4837–4847.
  • VWW Yam, SWK Choi, KKW Lo, WF Dung, and RVC Kong. (1994). Photolytic cleavage of DNA by [Au3(dmmp)2]3+. J Chem Soc Chem Commun 2379–2380.
  • LZ Li, C Zhao, T Xu, HW Ji, YH Yu, GQ Guo, and H Chao. (2005). Synthesis, crystal structure and nuclease activity of a Schiff base copper(II) complex. J Inorg Biochem 99:1076–1082.
  • K Dhara, J Ratha, M Manassero, XY Wang, S Gao, and P Banerjee. (2007). Synthesis, crystal structure, magnetic property and oxidative DNA cleavage activity of an octanuclear copper(II) complex showing water–perchlorate helical network. J Inorg Biochem 101:95–103.
  • S Routier, JL Bernier, JP Catteau, P Colson, C Houssier, C Rivalle, E Bisagni, and C Bailly. (1997). Synthesis, DNA binding, and cleaving properties of an ellipticine–salen copper conjugate. Bioconjugate Chem 8:789–792.
  • S Dhar, M Nethaji, and AR Chakravarty. (2006). DNA cleavage on photoexposure at the d–d band in ternary copper(II) complexes using red-light laser. Inorg Chem 45:11043–11050.
  • E Lamour, S Routier, JL Bernier, JP Catteau, C Bailly, and H Vezin. (1999). Oxidation of CuII to CuIII, free radical production, and DNA cleavage by hydroxy-salen-copper complexes. Isomeric effects studied by ESR and electrochemistry. J Am Chem Soc 121:1862–1869.
  • C Sissi, F Mancin, M Gatos, M Palumbo, P Tecilla, and U Tonellato. (2005). Efficient plasmid DNA cleavage by a mononuclear copper(II) complex. Inorg Chem 44:2310–2317.
  • SS Tonde, AS Kumbhar, SB Padhye, and RJ Butcher. (2006). Self-activating nuclease activity of copper (II) complexes of hydroxyl-rich ligands. J Inorg Biochem 100:51–57.
  • Y Yamamura, S Kobayashi, and T Fukuda. (1984). Synthesis, and the adjuvant and tumor-suppressive activities of quinonyl muramy dipeptides. Bull Chem Soc Jpn 57:3182–3196.
  • VS Pribluda, and SJ Green. (1998). A good estrogen. Science 280:983–987.
  • A Ho, Y Kim, H Lee, K Cyrus, SH Baek, and KB Kim. (2006). SAR studies of 2-methoxyestradiol and development of its analogs as probes of anti-tumor mechanisms. Bioorg Med Chem Lett 16:3383–3387.
  • P Lupon, F Canals, A Iglesias, and JC Ferrer. (1988). Photochemical behavior of DELTA.4-3-oxo, DELTA.5-7-oxo, and DELTA.1-3-oxo steroids in concentrated acid solution. J Org Chem 53:2193–2198.
  • MD Kuwabara, C Yoon, TE Goyne, T Thederahn, and DS Sigman. (1986). Nuclease activity of 1,10-phenanthroline-copper ion: Reaction with CGCGAATTCGCG and its complexes with netropsin and EcoRI. Biochemistry 25:7401–7407.
  • TB Thederahn, A Spassky, MD Kuwabara, and DS Sigman. (1990). Chemical nuclease activity of 5-phenyl-1,10-phenanthroline-copper ion detects intermediates in transcription initiation by E. Coli RNA polymerase. Biochem Biophys Res Commun 168:756–762.
  • N Matsumoto, JZ Zhang, H Okawa, and S kida. (1989). Crystal structure and magnetic property of the binuclear manganese(III) complex [Mn(L)H2O]2(ClO4)2(L = N-(acetylaceto nylidene)-N′-(α-methylsalicylidene)- ethylenediamine). Inorg Chem Acta 160:153–157.
  • B Halliwell, and JMC Gutteridge. (1981). Formation of a thiobarbituric-acid-reactive substance from deoxyribose in the presence of iron salts: The role of superoxide and hydroxyl radicals. FEBS Lett 128:347–352.

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