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Updated: Aug 23, 2026

Assessment of Open Probability of the Mitochondrial Permeability Transition Pore in the Setting of Coenzyme Q Excess
Published on: June 1, 2022
Cyclophilin-D promotes the mitochondrial permeability transition but has opposite effects on apoptosis and necrosis
Yanmin Li1, Nicholas Johnson, Michela Capano
1Department of Biochemistry and Molecular Biology, University College London, Gower Street, London WC1E 6BT, UK.
Abstract:
Cyclophilin-D is a peptidylprolyl cis-trans isomerase of the mitochondrial matrix. It is involved in mitochondrial permeability transition, in which the adenine nucleotide translocase of the inner membrane is transformed from an antiporter to a non-selective pore. The permeability transition has been widely considered as a mechanism in both apoptosis and necrosis. The present study examines the effects of cyclophilin-D on the permeability transition and lethal cell injury, using a neuronal (B50) cell line stably overexpressing cyclophilin-D in mitochondria. Cyclophilin-D overexpression rendered isolated mitochondria far more susceptible to the permeability transition induced by Ca2+ and oxidative stress. Similarly, cyclophilin-D overexpression brought forward the onset of the permeability transition in intact cells subjected to oxidative stress. In addition, in the absence of stress, the mitochondria of cells overexpressing cyclophilin-D maintained a lower inner-membrane potential than those of normal cells. All these effects of cyclophilin-D overexpression were abolished by cyclosporin A. It is concluded that cyclophilin-D promotes the permeability transition in B50 cells. However, cyclophilin-D overexpression had opposite effects on apoptosis and necrosis; whereas NO-induced necrosis was promoted, NO- and staurosporine-induced apoptosis were inhibited. These findings indicate that the permeability transition leads to cell necrosis, but argue against its involvement in apoptosis.
Insights
Cyclophilin-D promotes mitochondrial permeability transition, leading to cell necrosis but inhibiting apoptosis. This suggests the transition causes cell death via necrosis, not programmed cell death.
Area of Science:
- Mitochondrial Biology
- Cell Death Mechanisms
- Biochemistry
Background:
- Cyclophilin-D is a mitochondrial matrix enzyme.
- It plays a role in the mitochondrial permeability transition (MPT).
- MPT is implicated in both apoptosis and necrosis.
Purpose of the Study:
- To investigate the role of cyclophilin-D in MPT and cell injury.
- To examine the effects of cyclophilin-D overexpression in a neuronal cell line.
Main Methods:
- Utilized a neuronal (B50) cell line overexpressing mitochondrial cyclophilin-D.
- Assessed mitochondrial susceptibility to MPT induced by Ca2+ and oxidative stress.
- Evaluated MPT onset in intact cells under oxidative stress.
- Measured inner-membrane potential in intact cells.
- Investigated the effect of cyclosporin A.
Main Results:
- Cyclophilin-D overexpression increased mitochondrial susceptibility to MPT.
- Overexpression accelerated MPT onset in intact cells under oxidative stress.
- Mitochondria in overexpressing cells showed lower inner-membrane potential.
- Cyclosporin A abolished these effects.
- Necrosis was promoted, while NO- and staurosporine-induced apoptosis were inhibited.
Conclusions:
- Cyclophilin-D promotes the mitochondrial permeability transition in B50 cells.
- The MPT pathway contributes to cell necrosis.
- The MPT pathway does not appear to be involved in apoptosis.
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