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November 1, 1991Journal of Biological Chemistry574 citationsOpen Access

Detection of catalase in rat heart mitochondria.

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RRRafael RadíJTJulio F. TurrensLCL.Y. Chang

Key Points

  • To determine whether catalase is present within rat heart mitochondria and to characterize its suborganellar localization and functional role.
  • Measured catalase activity and consumption kinetics of exogenously added hydrogen peroxide in intact rat heart mitochondria under metabolic substrates and inhibitors.
  • Performed mitochondrial subfractionation, Western blot analysis, and quantitative electron microscopic immunocytochemistry to establish enzyme localization.
  • Catalase activity was detected at 20 ± 5 units/mg of mitochondrial protein, decomposing hydrogen peroxide into oxygen in a 2:1 stoichiometry that was inhibited by cyanide.
  • Quantitative immunocytochemistry and Western blotting confirmed that the catalase protein resides predominantly in the mitochondrial matrix, accounting for approximately 0.025% of heart mitochondrial protein.

Abstract

The presence of heme-containing catalase in rat heart mitochondria (20 +/- 5 units/mg) was demonstrated by biochemical and immunocytochemical analysis. Intact rat heart mitochondria efficiently consumed exogenously added H2O2. The rate of H2O2 consumption was not influenced by succinate, glutamate/malate, or N-ethylmaleimide but was significantly inhibited by cyanide. Hydrogen peroxide decomposition by mitochondria yielded molecular oxygen in a 2:1 stoichiometry, consistent with a catalytic mechanism. Mitochondrial fractionation studies and quantitative electron microscopic immunocytochemistry revealed that most catalase was matrix-associated. Electrophoretic analysis and Western blotting of the mitochondrial matrix fraction indicated the presence of a protein with similar electrophoretic mobility to bovine and rat liver catalase and immunoreactive to anti-catalase antibody. Myocardial tissue has a lower catalase-specific activity and a greater mitochondrial H2O2 production/g of tissue than most organs. Thus catalase, representing 0.025% of heart mitochondrial protein, is important for detoxifying mitochondrial derived H2O2 and represents a key antioxidant defense mechanism for myocardial tissue.

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Cite This Study

Radí et al. (1991) studied this question.

synapsesocial.com/papers/6a0295b3cab5b316e39e1f84https://doi.org/10.1016/s0021-9258(18)54740-2
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