4.7 Article

Cholestiane-3β,5α,6β-triol-induced reactive oxygen species production promotes mitochondrial dysfunction in isolated mice liver mitochondria

期刊

CHEMICO-BIOLOGICAL INTERACTIONS
卷 179, 期 2-3, 页码 81-87

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.cbi.2008.12.003

关键词

Cholestane-3 beta,5 alpha,6 beta-triol; Reactive oxygen species; Mitochondrial dysfunction

资金

  1. National Natural Science Foundation of China [20637010, 30700136]
  2. Natural Science Foundation of Hubei Province, China [2005ABA183]

向作者/读者索取更多资源

Reactive oxygen species (ROS) have been implicated in oxysterol-induced apoptosis. However, the mechanism of ROS production induced by oxysterols within cells is not clear. Considering that mitochondria is the main source of intracellular ROS, and play a key role in oxysterol-induced apoptosis, we investigated the effect of oxysterol cholestane-3 beta,5 alpha,6 beta-triol (Triol) on ROS production and mitochondrial function in isolated mice liver mitochondria. Triol at higher concentrations (10-50 mu M) enhanced the production of O-2(center dot-) and H2O2 in isolated mitochondria, which might be due to its stimulation to the activities of complexes I and II of mitochondrial electron transfer chain, and its inhibition to glutathione peroxidase activity. The same concentrations of Triol induced obviously oxidative damage of mitochondrial membrane lipids and proteins, as demonstrated by the increased MDA level and the decreased protein thiols content. Furthermore, Triol caused mitochondrial dysfunction, including the opening of mitochondrial permeability transition pore, the decrease of mitochondrial membrane potential (Delta Psi(m)) and the release of cytochrome c. Antioxidant butylated hydroxyroluene significantly inhibited oxidative damage, the decrease of Delta Psi(m) and the release of cytochrome c, implying that ROS might mediate mitochondrial dysfunction induced by Triol. We concluded that Triol-induced mitochondrial ROS production and subsequently oxidative damage, leading to the mitochondrial dysfunction, thus suggesting a putative mechanism of apoptosis activation by oxysterols in vascular cells. (c) 2008 Elsevier Ireland Ltd. All rights reserved.

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