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PMID: 11063906 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Mitochondrial or cytosolic catalase reverses the MnSOD-dependent inhibition of proliferation by enhancing respiratory chain activity, net ATP production, and decreasing the steady state levels of H(2)O(2).

Free radical biology & medicine ·Vol. 29 ·No. 9 ·2000-11-01 ·Pages 801-13

Rodríguez AM, Carrico PM, Mazurkiewicz JE, Meléndez JA

Abstract

Manganese superoxide dismutase (MnSOD) overexpression has been shown to reverse the malignant phenotype in a variety of tumor cell lines. The inhibition of proliferation and reversal of the malignant phenotype has been attributed to an increase in H(2)O(2) production as a result of the dismutation reaction. However, direct evidence in support of this hypothesis has not been forthcoming. To evaluate the contribution of H(2)O(2) in the regulation of cell growth in response to MnSOD overexpression, control and MnSOD-overexpressing HT-1080 fibrosarcoma cells were transfected with constructs that direct catalase to either the mitochondrial or cytosolic compartments. Overexpression of catalase in either compartment reversed the proliferative and clonogenic inhibition associated with MnSOD overexpression, blocked the increase in the steady state levels of H(2)O(2) as measured by flow cytometric analysis of 2', 7'-dichlorofluorescein diacetate, and increased protection from the cytotoxicity of H(2)O(2). In addition, mitochondrial or cytosolic catalase enhances respiration through complex I and II in both control and MnSOD overexpressing cell lines and reverses a MnSOD-dependent decrease in net ATP production. Thus, catalase reverses the proliferative inhibition associated with MnSOD overexpression and may also play an important role in metabolic regulation.

MeSH Terms
Adenosine Triphosphate/biosynthesis Catalase/genetics,metabolism Cell Division/physiology Cytosol/enzymology Electron Transport Free Radicals/metabolism Humans Hydrogen Peroxide/metabolism Microscopy, Fluorescence Mitochondria/enzymology Superoxide Dismutase/genetics,metabolism Transfection Tumor Cells, Cultured
Chemicals
Free Radicals Adenosine Triphosphate Hydrogen Peroxide Catalase Superoxide Dismutase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Rodríguez A M
Center for Immunology and Microbial Disease, Albany Medical College, Albany, NY 12208, USA.
Carrico P M
Mazurkiewicz J E
Meléndez J A
Article Info
Journal
Free radical biology & medicine
Abbr.
Free Radic Biol Med
ISSN
0891-5849
Published
2000-11-01
Pages
801-13
Language
English
Region
United States
NLM ID
8709159
Subset
IM
Grants
NCI NIH HHS · CA77068 · United States
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