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Original Article

Interactions of superoxide anion with enzyme radicals: Kinetics of reaction with lysozyme tryptophan radicals and corresponding effects on tyrosine electron transfer

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Pages 383-391 | Received 16 Dec 1999, Published online: 07 Jul 2009

References

  • Halliwell B., Gutteridge J.M.C. Free Radicals in Biology and Medicine. Clarendon Press, Oxford 1989
  • Grune T., Reinheckel T., Davies K.J.A. Degradation of oxidized proteins in mammalian cells. FASEB Journal 1997; 11: 526–534
  • Kohen E., Santus R., Hirschberg J.G. Photobiology. Academic Press, New York 1995; 73–109
  • Santus R., Patterson L.K., Bazin M., Mazière J.-C., Morlière P. Intra and intermolecular charge effects on the reaction of the superoxide radical anion with semioxidized tryptophan in peptides and N-acetyl tryptophan. Free Radical Research 1998; 29: 409–419
  • Butler J., Land E.J., Prutz W.A., Swallow A.J. Charge transfer between tryptophan and tyrosine in proteins. Biochimica et Biophysica Acta 1982; 705: 150–162
  • Ghiron C.A., Santus R., Bazin M., Butler J., Land E.J., Swallow A.J. Evidence from pulse radiolysis and flash photolysis of the environment of tryptophan and tyrosine in the coat protein of fd phage. Biochimica et Biophysica Acta 1986; 869: 363–366
  • Santus R., Patterson L.K., Bazin M. The diffusion-controlled reaction of semioxidized tryptophan with the superoxide radical anion. Free Radicals Biology & Medicine 1995; 19: 83–842
  • Josimovic L.J., Jankovic I., Jovanovic S.V. Radiation induced decomposition of tryptophan in the presence of oxygen. Radiation Physics and Chemistry 1993; 41: 835–841
  • Patterson L.K., Lilie J.A. Computer-controlled pulse radiolysis system. International Journal of Radiation Physical Chemistry 1974; 6: 129–141
  • Hug G.L., Wang Y., Schoneich C., Jiang P.-Y., Fessenden R.W. Multiple time scales in pulse radiolysis: Application to bromide solutions and dipeptides. Radiation Physics and Chemistry 1999; 54: 559–566
  • Schuler R.H., Patterson L.K., Janata E. Yield for the scavenging of OH radicals in the radiolysis of N2O-saturated aqueous solutions. Journal of Physical Chemistry 1980; 84: 2088–2089
  • Adams G.E. Radiation chemical mechanisms in radiation biology. Advances in Radiation Chemistry, M. Burton, J.L. Magee. John wiley and Sons, New York 1973; 3: 146–159, In
  • Redpath J.L., Santus R., Ovadia J., Grossweiner L.I. The oxidation of tryptophan by radical anions. International Journal of Radiation Biology 1975; 27: 201–204
  • Weinstein M., Alfassi Z.B., DeFelippis M.R., Klapper M.H., Farragi M. Long range electron transfer between tyrosine and tryptophan in hen egg-white lysozyme. Biochimica et Biophysica Acta 1991; 1076: 173–178
  • Jovanovic S.V., Simic M.G. Repair of tryptophan radicals by antioxidants. Journal of Free Radicals in Biology and Medicine 1985; 1: 125–129
  • Buxton G.V., Greenstock C.L., Helman W.P., Ross A.B. Critical review of rate constants for reactions of hydrated electrons, hydrogen atoms and hydroxyl radicals in aqueous solutions. Journal of Physical and Chemical Reference Data 1988; 17: 513–886
  • Neta P., Huie R.E., Ross A.B. Rate constants for reactions of inorganic radicals in aqueous solution. Journal of Physical and Chemical Reference Data 1988; 17: 1027–1284
  • Butler J., Koppenol W.H., Margoliash E. Kinetics and mechanism of the reduction of ferricytochrome c by the superoxide anion. Journal of Biological Chemistry 1982; 257: 10747–10750
  • Shimizu N., Kobayashi K., Hayashi K. The reaction of superoxide radical with catalase: Mechanism of the inhibition of catalase by superoxide radical. Journal of Biological Chemistry 1984; 259: 4414–4418
  • Phillips D.C. The three-dimensional structure of an enzyme molecule. The Molecular Basis of Life: An Introduction to Molecular Biology. Freeman, San Francisco 1968; 52–64, In
  • Kuznetsov S.V., Bazin M., Santus R. Water induced electron transfer from hematoporphyrin triplet state to metronidazole. Journal of Photochemistry and Photobiology A: Chemistry 1998; 119: 85–91
  • Cudina I., Josimovic L.J. The effect of oxygen on the radiolysis of tyrosine in aqueous solutions. Radiation Research 1987; 109: 206–215
  • Aubert C., Mathis P., Eker A.P.M., Brettel K. Intraprotein electron transfer between tyrosine and tryptophan in DNA photolyase from Anacystis nidulans. Proceedings of the National Academy of Sciences of the United States of America 1999; 96: 5423–5427
  • Tyrrell R. UVA (320–380 nm) radiation as an oxidative stress. Oxidative Stress: Oxidants and Antioxidants, E. Sies. Academic Press, London and San Diego 1991; 57–83, In
  • Spike J.D. Photosensitization. The Science of Photobiology, K.C. Smith. Plenum Press, New York 1989; 79–110, In

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