Literature DB >> 21103453

Mitochondrial respiratory chain inhibitors modulate the metal-induced inner mitochondrial membrane permeabilization.

Elena A Belyaeva1.   

Abstract

To elucidate the molecular mechanisms of the protective action of stigmatellin (an inhibitor of complex III of mitochondrial electron transport chain, mtETC) against the heavy metal-induced cytotoxicity, we tested its effectiveness against mitochondrial membrane permeabilization produced by heavy metal ions Cd²(+), Hg²(+), Cu²(+) and Zn²(+), as well as by Ca²(+) (in the presence of P(i)) or Se (in form of Na₂SeO₃) using isolated rat liver mitochondria. It was shown that stigmatellin modulated mitochondrial swelling produced by these metals/metalloids in the isotonic sucrose medium in the presence of ascorbate plus tetramethyl-p-phenylenediamine (complex IV substrates added for energization of the mitochondria). It was found that stigmatellin and other mtETC inhibitors enhanced the mitochondrial swelling induced by selenite. However, in the same medium, all the mtETC inhibitors tested as well as cyclosporin A and bongkrekic acid did not significantly affect Cu²(+)-induced swelling. In contrast, the high-amplitude swelling produced by Cd²(+), Hg²(+), Zn²(+), or Ca²(+) plus P(i) was significantly depressed by these inhibitors. Significant differences in the action of these metals/metalloids on the redox status of pyridine nucleotides, transmembrane potential and mitochondrial respiration were also observed. In the light of these results as well as the data from the recent literature, our hypothesis on a possible involvement of the respiratory supercomplex, formed by complex I (P-site) and complex III (S-site) in the mitochondrial permeabilization mediated by the mitochondrial transition pore, is updated.

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Year:  2010        PMID: 21103453

Source DB:  PubMed          Journal:  Acta Biochim Pol        ISSN: 0001-527X            Impact factor:   2.149


  6 in total

1.  Mitochondrial permeability transition induced by different concentrations of zinc.

Authors:  Xiao-Rong Liu; Jia-Han Li; Yue Zhang; Yu-Shu Ge; Fang-Fang Tian; Jie Dai; Feng-Lei Jiang; Yi Liu
Journal:  J Membr Biol       Date:  2011-11-02       Impact factor: 1.843

2.  Mechanism(s) of Toxic Action of Zn and Selenite: A Study on AS-30D Hepatoma Cells and Isolated Mitochondria.

Authors:  Elena A Belyaeva; Nils-Erik L Saris
Journal:  Biochem Res Int       Date:  2011-07-14

3.  Mitochondrial electron transport chain in heavy metal-induced neurotoxicity: effects of cadmium, mercury, and copper.

Authors:  Elena A Belyaeva; Tatyana V Sokolova; Larisa V Emelyanova; Irina O Zakharova
Journal:  ScientificWorldJournal       Date:  2012-04-24

Review 4.  Cadmium-Induced Cytotoxicity: Effects on Mitochondrial Electron Transport Chain.

Authors:  Jacopo Junio Valerio Branca; Alessandra Pacini; Massimo Gulisano; Niccolò Taddei; Claudia Fiorillo; Matteo Becatti
Journal:  Front Cell Dev Biol       Date:  2020-11-30

5.  On the mechanism(s) of membrane permeability transition in liver mitochondria of lamprey, Lampetra fluviatilis L.: insights from cadmium.

Authors:  Elena A Belyaeva; Larisa V Emelyanova; Sergey M Korotkov; Irina V Brailovskaya; Margarita V Savina
Journal:  Biomed Res Int       Date:  2014-06-03       Impact factor: 3.411

6.  EDNRB isoform 3 confers Temozolomide resistance in A375 melanoma cells by modulating membrane potential, reactive oxygen species and mitochondrial Ca2.

Authors:  Yun Shan Chen; Fen Liu; Yi Hong Luo; Yue Fan; Fang Gui Xu; Pin Li; Bei Zhou; Xiu Yu Pan; Chi Chiu Wang; Long Cui
Journal:  Cancer Manag Res       Date:  2019-08-05       Impact factor: 3.989

  6 in total

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