18
Views
9
CrossRef citations to date
0
Altmetric
Original Article

Hydroxyl and Alkoxyl Radical Production By Oxidation Products of Metmyoglobin

&
Pages 29-41 | Received 26 Aug 1992, Accepted 15 Sep 1992, Published online: 07 Jul 2009

References

  • King N. K., Winfleld M. E. The mechanism of metmyoglobin oxidation. Journal of Biological Chemistry 1963; 238: 1520–1528
  • Puppo A., Halliwell B. Formation of hydroxyl radicals from hydrogen peroxide in the presence of iron: Is haemoglobin a biological Fenton reagent?. Biological Journal 1988; 249: 185–190
  • Davics M. J. Detection of myoglobin-derived radicals on reaction of metmyoglobin with hydrogen peroxide and other peroxidic compounds. Free Radical Research Communications 1990; 10: 361–370
  • Davies M. J. Identification of a globin free radical in equine myoglobin treated with peroxides. Biochimica et Bivphyska Acta 1991; 1077: 86–90
  • Gutteridge J. M.C. Iron promoters of the Fenton reaction and lipid peroxidation can be relased from hemoglobin by peroxides. FEBS Letters 1986; 201: 291–295
  • Harel S., Salan M. A., Kanner J. Iron release from metmyoglobin, methaemoglobin and cytochrome c by a system generating hydrogen peroxide. Free Radical Research Communications 1988; 5: 11–19
  • Trotta R. J., Sullivan S. G., Stern A. Lipid Peroxidation and hemoglobin degradation in red blood cells exposed to t-butyl hydroperoxide: Dependence on glucose metabolism and hemoglobin status. Biochimica et Biophysica Acta 1981; 679: 230–237
  • Trotta R. J., Sullivan S. G., Stern A. Lipid peroxidation and haemoglobin degradation in red blood cells exposed to t-butyl hydroperoxide: Effects of hexose monophosphate shunt as mediated by glutathione and ascorbate. Biochemical Journal 1982; 204: 405–415
  • Trotta R. J., Sullivan S. G., Stern A. Lipid peroxidation and haemoglobin degradation in red blood cells exposed to t-butyl hydroperoxide: The relative role of haem- and glutathione-dependent decomposition of t-butyl hydroperoxide and membrane lipid hydroperoxides in lipid peroxidation and haemolysis. Biochemical Journal 1983; 212: 759–772
  • Snyder L. M., Fortier N. L., Leb L., McKenney J., Trainor J., Sheerin H., Mohandas N. The role of membrane protein sulfhydryl groups in hydrogen peroxide-mediated membrane damage in erythrocytes. Biochimica et Biophysica Acta 1988; 937: 229–240
  • Snyder L. M., Fortier N. L., Trainor J., Jacobs J., Leb L., Lubin B., Chiu D., Shohetand S., Mohandas N. Effect of hydrogen peroxide exposure on normal human erythrocyte deformability, morphology. surface characteristics, and spectrin-hemoglobin crosslinking. Journal of Clinical Investigation 1985; 76: 1971–1977
  • Sullivan S. G., Stern A. Membrane protein changes induced by tert-butyl hydroperoxide in red blood cells. Biochimka et Biophysica Acta 1984; 774: 215–220
  • Shakali N., Frayman B., Fortier N. N., Snyder M. Crosslinking of isolated cytoskeletal proteins with hemoglobin: a possible damage inflicted to the red cell membrane. Biochimica et Biophysica Acta 1987; 915: 406–414
  • Galaris D., Cadenas E., Hochstein P. Redox cycling of myoglobin and ascorbate: A potential protective mechanism against oxidative reperfusion injury in muscle. Archives of Biochemistry and Biophysics 1989; 273: 497–504
  • Davies M. J. Detection of peroxyl and alkoxyl radicals produced by reaction of hydroperoxides with heme-proteins by electron spin resonance spectroscopy. Biochemica et Biophysica Acta 1988; 964: 28–35
  • Chance B., Sies H., Boveris A. Hydroperoxide metabolism in mammalian organs. Physiological Reviews 1979; 59: 527–605
  • Church D. F., Pryor W. A. Free radical chemistry of cigarette smoke and its toxicological implictions. Environmental Health Perspectives 1985; 64: 111–126
  • Prolla T. A., Mehlhorn R. J. A photochemical system for generating free radicals: superoxide, phenoxyl, ferryl and methyl. Free Radical Research Communications 1990; 9: 135–146
  • Moore K. L., Moronne M. M., Mehlhorn R. J. Kinetics of Phenol Oxidation by Lacto- and Horseradish Peroxidase as Assayed by Electron Spin Resonance. Archives of Biochemistry and Biophysics 1992; 299: 47–56
  • Rosen G. M., Finkelstein E., Rauckman E. J. A method for the detection of superoxide in biological systems. Archives of Biochemistry and Biophysics 1982; 215: 367–378
  • Kennedy C. H., Pryor W. A., Winston G. W., Church D. F. Hydroperoxide-induced radical production in liver mitochondria. Biochemical and Biophysical Research Communications 1986; 141: 1123–1129
  • Carter P. Spectrophotometric determination of serum iron at the submicrogram level with a new reagent (ferrozine). Analytical Biochemistry 1971; 40: 450–458
  • Mehlhorn R. J., Swanson C. E. Nitroxide-stimulated H202 Decomposition by Peroxidases and Pseudoperoxidases. Free Radical Research Communications 1992; 17: 157–175

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.