Abstract

The mitochondrial calcium uniporter (MCU) and cyclophilin D (CyD) are key players in induction of the permeability transition pore (PTP), which leads to mitochondrial depolarization and swelling, the major signs of Ca2+-induced mitochondrial damage. Mitochondrial depolarization inhibits ATP production, whereas swelling results in the release of mitochondrial pro-apoptotic proteins. The extent to which simultaneous deletion of MCU and CyD inhibits PTP induction and prevents damage of brain mitochondria is not clear. Here, we investigated the effects of MCU and CyD deletion on the propensity for PTP induction using mitochondria isolated from the brains of MCU-KO, CyD-KO, and newly created MCU/CyD-double knockout (DKO) mice. Neither deletion of MCU nor of CyD affected respiration or membrane potential in mitochondria isolated from the brains of these mice. Mitochondria from MCU-KO and MCU/CyD-DKO mice displayed reduced Ca2+ uptake and diminished extent of PTP induction. The Ca2+ uptake by mitochondria from CyD-KO mice was increased compared with mitochondria from WT mice. Deletion of CyD prevented mitochondrial swelling and resulted in transient depolarization in response to Ca2+, but it did not prevent Ca2+-induced delayed mitochondrial depolarization. Mitochondria from MCU/CyD-DKO mice did not swell in response to Ca2+, but they did exhibit mild sustained depolarization. Dibucaine, an inhibitor of the Ca2+-activated mitochondrial phospholipase A2, attenuated and bovine serum albumin completely eliminated the sustained depolarization. This suggests the involvement of phospholipase A2 and free fatty acids. Thus, in addition to induction of the classical PTP, alternative deleterious mechanisms may contribute to mitochondrial damage following exposure to elevated Ca2+.

Highlights

  • Mitochondrial Ca2+ uptake plays an important role in the maintenance of cellular functions and in the regulation of mitochondrial activities [1, 2]

  • In our previous study with brain mitochondria from mitochondrial calcium uniporter (MCU)-KO mice, we showed that a combination of permeability transition pore (PTP) inhibitors, cyclosporin A (CsA), ADP, and bovine serum albumin (BSA, free from free fatty acid (FFA)), completely inhibited mitochondrial swelling induced by Ca2+, thereby attributing mitochondrial swelling to PTP induction [14]

  • We investigated the effect of genetic ablation of the MCU and cyclophilin D (CyD) on mitochondrial respiration, membrane potential, and induction of the PTP

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Summary

Introduction

Mitochondrial Ca2+ uptake plays an important role in the maintenance of cellular functions and in the regulation of mitochondrial activities [1, 2]. Deletion of CyD prevented Ca2+-induced swelling of MCU-KO brain mitochondria but could not completely preclude Ca2+-induced sustained mitochondrial depolarization. We assessed the stimulating effect of Ca2+ on respiration of nonsynaptic and synaptic brain mitochondria from control, CD1 mice, and MCU/CyD-DKO mice (Fig. 4).

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