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Copper salt-dependent hydroxyl radical formation

Biochimica et Biophysica Acta (BBA) - General SubjectsPublished 1 August 1983
John M.C. Gutteridge, Stephanie Wilkins
Citations242
SJR quartileQ2
SJR score0.77
SNIP0.66

TL;DR

All proteins tested nonspecifically inhibited copper-dependent damage but have little effect on the iron-dependent reaction, as fluorescent changes in amino acid residues.

Abstract

Cupric ions (Cu2+) and ferric ions (Fe3+) added to hydrogen peroxide generate hydroxyl radicals (OH) capable of degrading deoxyribose with the formation of thiobarbituric acid-reactive products. This damage can be inhibited by catalase, OH radical scavengers and specific metal ion chelators. All proteins tested nonspecifically inhibited copper-dependent damage but have little effect on the iron-dependent reaction. Copper ions appear to bind to the proteins which prevents formation of OH radicals in free solution. However, OH radicals are still generated at a site-specific location on the protein molecule. Protein damage is detected as fluorescent changes in amino acid residues.

Keywords

ChemistryBiochemistry, Genetics and Molecular BiologyEnvironmental Science