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Updated: Jul 14, 2026

Assessment of Open Probability of the Mitochondrial Permeability Transition Pore in the Setting of Coenzyme Q Excess
Published on: June 1, 2022
Assessing the molecular basis for rat-selective induction of the mitochondrial permeability transition by norbormide
Alessandra Zulian1, Valeria Petronilli, Sergio Bova
1Department of Pharmacology and Anesthesiology/Pharmacology Division, University of Padova, Padova, Italy.
Abstract:
It was recently demonstrated that the rat-selective toxicant norbormide also induces rat-selective opening of the permeability transition pore (PTP) in isolated mitochondria. Norbormide is a mixture of endo and exo stereoisomers; however, only the endo forms are lethal to rats. In the present study we tested both endo and exo isomers as well as neutral and cationic derivatives of norbormide to: (i) verify if the PTP-regulatory activity by norbormide is stereospecific; (ii) define the structural features of norbormide responsible for PTP-activation, (iii) elucidate the basis for the drug species-specificity. Our results show that: (i) norbormide isomers affect PTP in a rat-selective fashion; however, no relevant differences between lethal and non-lethal forms are observed suggesting that drug regulation of PTP-activity and lethality in rats are unrelated phenomena; (ii) a (phenylvinyl)pyridine moiety represents the key element conferring the PTP-activating effect; (iii) cationic derivatives of rat-active compounds accumulate in the matrix via the membrane potential and activate the PTP also in mouse and guinea pig mitochondria. These findings suggest that the norbormide-sensitive PTP-target is present in all species examined, and is presumably located on the matrix side. The species-selectivity may depend on the unique properties of a transport system allowing drug internalisation in rat mitochondria.
Insights
Norbormide
Area of Science:
- Mitochondrial physiology
- Toxicology
- Biochemistry
Background:
- Norbormide is a rat-selective toxicant.
- It induces rat-selective opening of the permeability transition pore (PTP) in isolated mitochondria.
- Norbormide exists as endo and exo stereoisomers, with endo forms being lethal to rats.
Purpose of the Study:
- To verify if norbormide's PTP-regulatory activity is stereospecific.
- To define structural features of norbormide responsible for PTP activation.
- To elucidate the basis for norbormide's species-specificity.
Main Methods:
- Testing endo and exo isomers of norbormide.
- Evaluating neutral and cationic derivatives of norbormide.
- Assessing PTP activity in isolated mitochondria from different species.
Main Results:
- Norbormide isomers affect PTP in a rat-selective manner, but lethality and PTP activity appear unrelated.
- A (phenylvinyl)pyridine moiety is crucial for PTP-activating effect.
- Cationic norbormide derivatives activate PTP in non-rat mitochondria by accumulating in the matrix.
Conclusions:
- The norbormide-sensitive PTP target is present in all examined species and likely located on the matrix side.
- Species-selectivity of norbormide may stem from differences in mitochondrial transport systems.
- Drug accumulation via membrane potential is key for PTP activation in non-rat mitochondria.
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