Hemoproteins Affect H(2)O(2) Removal from Rat Tissues
Overview
Cell Biology
Authors
Affiliations
The capacity of rat liver homogenates and mitochondria to remove H(2)O(2) was determined by comparing their ability to slow fluorescence generated by a H(2)O(2) 'detector' with that of desferrioxamine solutions. H(2)O(2) was produced by glucose oxidase-catalysed glucose oxidation. The capacity to remove H(2)O(2) was expressed as equivalent concentration of desferrioxamine. The method showed changes in the capacity of H(2)O(2) removal after treatment with ter-butylhydroperoxide or glutathione. The H(2)O(2) removal capacity of homogenates and mitochondria from rat liver, heart, and skeletal muscle was compared with their overall antioxidant capacity. For homogenates, the order of both antioxidant and H(2)O(2) removal capacities was liver>heart>muscle. For mitochondria, the order of the antioxidant capacities mirrored that of the homogenates, while the order of the H(2)O(2) removal capacities was heart>muscle>liver. Because H(2)O(2) removal is not only due to H(2)O(2)-metabolizing enzymes, but also to hemoproteins that convert H(2)O(2) into more reactive radicals via Fenton reaction, the higher concentration of cytochromes in mitochondria of cardiac and skeletal muscles can explain the above discrepancy. A higher H(2)O(2) removal capacity was found to be associated with a higher rate of H(2)O(2) release by mitochondria, indicating that the order of H(2)O(2) release rate mirrors that of H(2)O(2) production rate. We suggest that the different capacities of the mitochondria from the three tissues to produce reactive oxygen species are due to differences in the concentration of respiratory mitochondrial chain components in the reduced form.
Role of enzymatic and non-enzymatic processes in H2O2 removal by rat liver and heart mitochondria.
Venditti P, Napolitano G, Di Meo S J Bioenerg Biomembr. 2013; 46(1):83-91.
PMID: 24276849 DOI: 10.1007/s10863-013-9534-8.
Vitamin E management of oxidative damage-linked dysfunctions of hyperthyroid tissues.
Venditti P, Di Stefano L, Di Meo S Cell Mol Life Sci. 2012; 70(17):3125-44.
PMID: 23255045 PMC: 11114018. DOI: 10.1007/s00018-012-1217-9.
Effect of vitamin E on characteristics of liver mitochondrial fractions from cold-exposed rats.
Venditti P, Napolitano G, Di Stefano L, Di Meo S J Bioenerg Biomembr. 2011; 43(4):387-97.
PMID: 21732173 DOI: 10.1007/s10863-011-9371-6.
Wen J, Dhiman M, Whorton E, Garg N Microbes Infect. 2008; 10(10-11):1201-9.
PMID: 18675934 PMC: 2613841. DOI: 10.1016/j.micinf.2008.06.013.
Venditti P, Bari A, Di Stefano L, Agnisola C, Di Meo S Pflugers Arch. 2007; 455(4):667-76.
PMID: 17701423 DOI: 10.1007/s00424-007-0328-x.