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Inhibition of DNA restrictive endonucleases by aqueous nanoparticle suspension of methanophosphonate fullerene derivatives and its mechanisms

Inhibition of DNA restrictive endonucleases by aqueous nanoparticle suspension of methanophosphonate fullerene derivatives and its mechanisms
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摘要 Aqueous nanoparticle suspension of fullerene and its derivatives are currently attracting much attention. To determine the effects of aqueous nanoparticle suspension of a mono-methanophosphonate fullerene and bis-methanophosphonate fullerene (denoted as n-MMPF and n-BMPF, respectively) on the activities of DNA restrictive endonucleases, plasmid pEGFP-N1 was cleaved at a single but differently restrictive site by EcoR I, BamH I, and isozymes Cfr9 I and Xma I, respectively. Both n-MMPF and n-BMPF inhibited the activity of EcoR I, while n-BMPF exhibited stronger inhibition than n-MMPF. Addition of n-BMPF into reaction mixtures inhibited the activities of all the four enzymes, and IC50 values for EcoR I, BamH I, Cfr9 I and Xma I were 4.3, >30, 11.7 and 8.3 μmol/L, respectively. When EcoR I was completely inhibited by n-BMPF, addition of excess amounts of pEGFP-N1 could not produce the product linear plasmid; however, increase of EcoR I amounts antagonized EcoR I inhibition of n-BMPF. Two scavengers of reactive oxygen species (ROS), mannitol and sodium azide at the concentrations of 2-10 mmol/L, did not reverse inhibition of n-BMPF, implying that this inhibition probably is not correlated to ROS. These results suggested that aqueous nano-fullerenes might act as inhibitors of DNA restrictive endonucleases. Aqueous nanoparticle suspension of fullerene and its derivatives are currently attracting much attention. To determine the effects of aqueous nanoparticle suspension of a mono-methanophosphonate fullerene and bis-methanophosphonate fullerene (denoted as n-MMPF and n-BMPF, respectively) on the activities of DNA restrictive endonucleases, plasmid pEGFP-N1 was cleaved at a single but differently restrictive site by EcoR I, BamH I, and isozymes Cfr9 I and Xma I, respectively. Both n-MMPF and n-BMPF inhibited the activity of EcoR I, while n-BMPF exhibited stronger inhibition than n-MMPF. Addition of n-BMPF into reaction mixtures inhibited the activities of all the four enzymes, and IC50 values for EcoR I, BamH I, Cfr9 I and Xma I were 4.3, >30, 11.7 and 8.3 μmol/L, respectively. When EcoR I was completely inhibited by n-BMPF, addition of excess amounts of pEGFP-N1 could not produce the product linear plasmid; however, increase of EcoR I amounts antagonized EcoR I inhibition of n-BMPF. Two scavengers of reactive oxygen species (ROS), mannitol and sodium azide at the concentrations of 2–10 mmol/L, did not reverse inhibition of n-BMPF, implying that this inhibition probably is not correlated to ROS. These results suggested that aqueous nano-fullerenes might act as inhibitors of DNA restrictive endonucleases.
出处 《Science China Chemistry》 SCIE EI CAS 2009年第5期626-631,共6页 中国科学(化学英文版)
基金 Supported by the National Natural Science Foundation of China (Grant No. 20672012) Beijing Natural Science Foundation (Grant No. 20822020)
关键词 mono-and bis-methanophosphonate FULLERENE AQUEOUS nanoparticle suspension DNA RESTRICTIVE ENDONUCLEASES reactive oxygen species mono- and bis-methanophosphonate fullerene aqueous nanoparticle suspension DNA restrictive endonucleases reactive oxygen species
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参考文献25

  • 1YANG XinLin CHEN Zhe MENG XianMei LI Bo TAN Xin.Inhibition of DNA restrictive endonucleases and Taq DNA polymerase by trimalonic acid C_(60)[J].Chinese Science Bulletin,2007,52(13):1802-1806. 被引量:4
  • 2Yang X,Meng X,Li B,Chen Z,Zhao D,Tan X,Yu Q.Inhibition of in vitro amplification of targeted DNA fragment and activity of ex-onuclease I by a fullerene-oligonucleotide conjugate. Biologicals . 2008
  • 3Stoilova O,Jér?me C,Detrembleur C,Mouithys-Mickalad A,Manolova N,Rashkov I,Jé r?m R.New nanostructured materials based on fullerene and biodegradable polyesters. Chemistry of Materials . 2006
  • 4Higashi N,Shosu T,Koga T,Niwa M,Tanigawa T.pH-Responsive, self-assembling nanoparticle from a fullerene-tagged poly(L-glutamic acid) and its superoxide dismutase mimetic property. Journal of Colloid and Interface Science . 2006
  • 5Zhou G,Harruna I I,Zhou W L,Aicher W K,Geckeler K E.Nanos-tructured thermosensitive polymers with radical scavenging ability. Chemistry A European Journal . 2007
  • 6Isobe H,Nakanishi W,Tomita N,Jinno S,Okayama H,Nakamura E.Nonviral gene delivery by tetraamino fullerene. Molecular Pharmacology . 2006
  • 7Friedman SH,DeCamp DL,Sijbesma RP,et al.Inhibition of the HIV-1 protease by fullerene derivatives: model building studies and experimental verification. Journal of the American Chemical Society . 1993
  • 8Mashino,T,Shimotohno,K,Ikegami,N,Nishikawa,D,Okuda,K,Takahashi,K,Nakamura,S,Mochizuki,M.Human immunodeficiency virus-reverse transcriptase inhibition and hepatitis C virus RNA-dependent RNA polymerase inhibition activities of fullerene derivatives. Bioorganic and Medicinal Chemistry . 2005
  • 9Yang,X. L.,Fan,C. H.,Zhu,H. S.Photo-induced cytotoxicity of malonic acid of fullerene derivatives and its mechanism. Toxicology in Vitro . 2002
  • 10Bosi,S.,Da,Ros,T.,Spalluto,G.,Prato,M.Fullerene derivatives: an attractive tool for biological applications. European Journal of Medicinal Chemistry . 2003

二级参考文献11

  • 1MENG Xianmei CHEN Zhe LI Bo ZHANG Yufei ZHAO Dongxu YANG Xinlin.Inhibition of M-MuLV reverse transcriptase activity by fullerene derivatives[J].Chinese Science Bulletin,2006,51(20):2550-2552. 被引量:4
  • 2Belgorodsky B,Fadeev L,Ittah V,et al.Formation and characteriza- tion of stable human serum albumin-tris-malonic acid [C60]fullerene complex[]..2005
  • 3Ali S S,Hardt J I,Quick K L,et al.A biologically effective fullerene (C60) derivative with superoxide dismutase mimetic properties[].Free Radical Biology and Medicine.2004
  • 4Lamparth I,Hirsch A.Water-soluble malonic acid derivatives of C60 with a defined three-dimensional structure[].Journal of the Chemical Society Chemical Communications.1994
  • 5Toth E,Bolskar R D,Borel A,et al.Water-soluble gadofullerenes: toward high-relaxivity, pH-responsive MRI contrast agents[].Journal of the American Chemical Society.2005
  • 6Sijbesma R,Srdanov G,Wudl F,et al.Synthesis of a fullerene de- rivative for the inhibition of HIV enzymes[].Journal of the American Chemical Society.1993
  • 7Mashino T,Nishikawa D,Takahashi K,et al.Antibacterial and anti- proliferative activity of cationic fullerene derivatives[].Bioorganic and Medicinal Chemistry.2003
  • 8Isakovic A,Markovic Z,Todorovic-Markovic B,et al.Distinct cy- totoxic mechanisms of pristine versus hydroxylated fullerene[].Toxicological Sciences.2006
  • 9Tsao N,Kanakamma P P,Luh T,et al.Inhibition of Escherichia coli-induced meningitis by carboxyfullerence[].Antimicrobial Agents and Chemotherapy.1999
  • 10Mashino T,Usui N,Okuda K,et al.Respiratory chain inhibition by fullerene derivatives: hydrogen peroxide production caused by fullerene derivatives and a respiratory chain system[].Bioorganic and Medicinal Chemistry.2003

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