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Biochemistry|May 6, 1975
The role of superoxide radical in the autoxidation of cytochrome cR H Cassell, I FridovichFree Radical Biology & Medicine|December 5, 1998
Lucigenin as mediator of superoxide production: revisitedS I Liochev, I FridovichReviews of Infectious Diseases|March 1, 1979
Superoxide, hydrogen peroxide, and oxygen tolerance of oxygen-sensitive mutants of Escherichia coliH M Hassan, I FridovichThe Journal of Biological Chemistry|January 15, 1991
In vivo competition between iron and manganese for occupancy of the active site region of the manganese-superoxide dismutase of Escherichia coliW F Beyer, I FridovichJournal of Gerontology|July 1, 1976
Superoxide dismutase in the rat and mouse as a function of age and longevityE W Kellogg, I FridovichArchives of Biochemistry and Biophysics|April 1, 1992
Effects of overproduction of superoxide dismutases in Escherichia coli on inhibition of growth and on induction of glucose-6-phosphate dehydrogenase by paraquatS I Liochev, I FridovichArchives of Biochemistry and Biophysics|September 1, 1985
A comparison of the effects of cyanide, hydrogen peroxide, and phenylglyoxal on eucaryotic and procaryotic Cu,Zn superoxide dismutasesC L Borders, I FridovichArchives of Biochemistry and Biophysics|January 1, 1997
Lucigenin (bis-N-methylacridinium) as a mediator of superoxide anion productionS I Liochev, I FridovichThe Journal of Biological Chemistry|November 5, 1997
A mechanism for complementation of the sodA sodB defect in Escherichia coli by overproduction of the rbo gene product (desulfoferrodoxin) from Desulfoarculus baarsiiS I Liochev, I FridovichArchives of Biochemistry and Biophysics|May 23, 2001
The oxidation of 3-hydroxyanthranilic acid by Cu,Zn superoxide dismutase: mechanism and possible consequencesS I Liochev, I FridovichPageof 24