Tl+ induces the permeability transition pore in Ca2+-loaded rat liver mitochondria energized by glutamate and malate
[Display omitted] •A rise in Tl+-induced pore in mitochondria with the complex I substrate is proposed.•More swelling of mitochondria with Ca2+, glutamate, and malate confirms the rise.•Ca2+-effected fall in mitochondrial respiration is resulted in the swelling increase.•Pore inhibitors decreased th...
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Veröffentlicht in: | Toxicology in vitro 2015-08, Vol.29 (5), p.1034-1041 |
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Sprache: | eng |
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Zusammenfassung: | [Display omitted]
•A rise in Tl+-induced pore in mitochondria with the complex I substrate is proposed.•More swelling of mitochondria with Ca2+, glutamate, and malate confirms the rise.•Ca2+-effected fall in mitochondrial respiration is resulted in the swelling increase.•Pore inhibitors decreased the fall in the respiration and the swelling increase.•The complex strain and formation of Tl+ complexes with matrix proteins are suggested.
It is known that Ca2+ and heavy metals more actively induce MPTP opening in mitochondria, energized by the I complex substrates. Thus, a rise in a Tl+-induced MPTP was proposed in experiments on isolated rat liver mitochondria energized by the complex I substrate (glutamate and malate). Expose of the mitochondria to Ca2+ into a medium containing TlNO3, glutamate, and malate as well as sucrose or KNO3 resulted in a decrease in state 3, state 4, or DNP-stimulated respiration as well as an increase of both mitochondrial swelling and ΔΨmito dissipation. The MPTP inhibitors, CsA and ADP, almost completely eliminated the effect of Ca2+, which was more pronounced in the presence of the complex I substrates than the complex II substrate (succinate) and rotenone (Korotkov and Saris, 2011). The present study concludes that Tl+-induced MPTP opening is more appreciable in mitochondria energized by glutamate and malate but not succinate in the presence of rotenone. We assume that the Tl+-induced MPTP opening along with followed swelling and possible structural deformations of the complex I in Ca2+-loaded mitochondria may be a part of the thallium toxicity mechanism on mitochondria in living organisms. At the same time, oxidation of Tl+ to Tl3+ by mitochondrial oxygen reactive species is proposed for the mechanism. |
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ISSN: | 0887-2333 1879-3177 |
DOI: | 10.1016/j.tiv.2015.04.006 |