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PMID: 17307400 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Evidence of ROS generation by mitochondria in cells with impaired electron transport chain and mitochondrial DNA damage.

Mitochondrion ·Vol. 7 ·No. 1-2 ·2007-00-00 ·Pages 106-18

Indo HP, Davidson M, Yen HC, Suenaga S, Tomita K, Nishii T, Higuchi M, Koga Y, Ozawa T, Majima HJ

Abstract

Mitochondrial damage is a well known cause of mitochondria-related diseases. A major mechanism underlying the development of mitochondria-related diseases is thought to be an increase in intracellular oxidative stress produced by impairment of the mitochondrial electron transport chain (ETC). However, clear evidence of intracellular free radical generation has not been clearly provided for mitochondrial DNA (mtDNA)-damaged cells. In this study, using the novel fluorescence dye, 2-[6-(4'-hydroxy)phenoxy-3H-xanthen-3-on-9-yl]benzoic acid (HPF), which was designed to detect hydroxyl radicals (*OH), intracellular free radical formation was examined in 143B cells (parental cells), 143B-rho(0) cells (mtDNA-lacking cells), 87 wt (cybrid), and cybrids of 4977-bp mtDNA deletion (common deletion) cells containing the deletion with 0%, 5%, 50% and >99% frequency (HeLacot, BH5, BH50 and BH3.12, respectively), using a laser confocal microscope detection method. ETC inhibitors (rotenone, 3-nitropropionic acid, thenoyltrifluoroacetone, antimycin A and sodium cyanide) were also tested to determine whether inhibitor treatment increased intracellular reactive oxygen species (ROS) generation. A significant increase in ROS for 143B-rho(0) cells was observed compared with 143B cells. However, for the 87 wt cybrid, no increase was observed. An increase was also observed in the mtDNA-deleted cells BH50 and BH3.12. The ETC inhibitors increased intracellular ROS in both 143B and 143B-rho(0) cells. Furthermore, in every fluorescence image, the fluorescence dye appeared localized around the nuclei. To clarify the localization, we double-stained cells with the dye and MitoTracker Red. The resulting fluorescence was consistently located in mitochondria. Furthermore, manganese superoxide dismutase (MnSOD) cDNA-transfected cells had decreased ROS. These results suggest that more ROS are generated from mitochondria in ETC-inhibited and mtDNA-damaged cells, which have impaired ETC.

MeSH Terms
Antimycin A/pharmacology Cell Line, Tumor DNA Damage DNA, Mitochondrial/metabolism Electron Transport/drug effects Fluoresceins Fluorescent Dyes Humans Hybrid Cells Mitochondria/drug effects,metabolism Nitro Compounds/pharmacology Propionates/pharmacology Reactive Oxygen Species/metabolism Rotenone/pharmacology Sodium Cyanide/pharmacology Superoxide Dismutase/genetics Thenoyltrifluoroacetone/pharmacology Transfection
Chemicals
2-(6-(4'-hydroxy)phenoxy-3H-xanthen-3-on-9-yl)benzoic acid DNA, Mitochondrial Fluoresceins Fluorescent Dyes Nitro Compounds Propionates Reactive Oxygen Species Rotenone Thenoyltrifluoroacetone Antimycin A Superoxide Dismutase Sodium Cyanide 3-nitropropionic acid
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Indo Hiroko P
Department of Oncology, Kagoshima University Graduate School of Medical and Dental Sciences, 8-35-1 Sakuragaoka, Kagoshima 890-8544, Japan.
Davidson Mercy
Yen Hsiu-Chuan
Suenaga Shigeaki
Tomita Kazuo
Nishii Takeshi
Higuchi Masahiro
Koga Yasutoshi
Ozawa Toshihiko
Majima Hideyuki J
Article Info
Journal
Mitochondrion
Abbr.
Mitochondrion
ISSN
1567-7249
Published
2007-00-00
Epub
2006-00-13
Pages
106-18
Language
English
Region
Netherlands
NLM ID
100968751
Subset
IM
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