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Updated: May 19, 2026

Immunodetection of Outer Membrane Proteins by Flow Cytometry of Isolated Mitochondria
Published on: September 18, 2014
Mitochondrial swelling and incipient outer membrane rupture in preapoptotic and apoptotic cells
A Sesso1, J E Belizário, M M Marques
1Setor de Biologia Estrutural, Laboratório de Imunopatologia, Instituto de Medicina Tropical, Universidade de São Paulo, São Paulo, Brazil. antses88@uol.com.br
Abstract:
Outer mitochondrial membrane (OMM) rupture was first noted in isolated mitochondria in which the inner mitochondrial membrane (IMM) had lost its selective permeability. This phenomenon referred to as mitochondrial permeability transition (MPT) refers to a permeabilized inner membrane that originates a large swelling in the mitochondrial matrix, which distends the outer membrane until it ruptures. Here, we have expanded previous electron microscopic observations that in apoptotic cells, OMM rupture is not caused by a membrane stretching promoted by a markedly swollen matrix. It is shown that the widths of the ruptured regions of the OMM vary from 6 to 250 nm. Independent of the perforation size, herniation of the mitochondrial matrix appeared to have resulted in pushing the IMM through the perforation. A large, long focal herniation of the mitochondrial matrix, covered with the IMM, was associated with a rupture of the OMM that was as small as 6 nm. Contextually, the collapse of the selective permeability of the IMM may precede or follow the release of the mitochondrial proteins of the intermembrane space into the cytoplasm. When the MPT is a late event, exit of the intermembrane space proteins to the cytoplasm is unimpeded and occurs through channels that transverse the outer membrane, because so far, the inner membrane is impermeable. No channel within the outer membrane can expose to the cytoplasm a permeable inner membrane, because it would serve as a conduit for local herniation of the mitochondrial matrix.
Insights
Outer mitochondrial membrane (OMM) rupture during mitochondrial permeability transition (MPT) is not due to matrix swelling. Instead, inner mitochondrial membrane (IMM) herniation through small OMM perforations drives rupture.
Area of Science:
- Cell Biology
- Mitochondrial Biology
- Apoptosis
Background:
- Mitochondrial permeability transition (MPT) involves inner mitochondrial membrane (IMM) permeabilization and matrix swelling, leading to outer mitochondrial membrane (OMM) rupture.
- Previous studies suggested OMM rupture is caused by matrix distension during MPT.
Purpose of the Study:
- To re-evaluate the mechanism of OMM rupture in apoptotic cells using electron microscopy.
- To investigate the relationship between IMM permeability, matrix herniation, and OMM rupture.
Main Methods:
- Detailed electron microscopic analysis of apoptotic cells.
- Observation of mitochondrial morphology and membrane integrity.
Main Results:
- OMM rupture in apoptotic cells is not solely caused by matrix swelling.
- Rupture sites on the OMM varied from 6 to 250 nm.
- IMM herniation through OMM perforations, even small ones (6 nm), was observed, pushing matrix contents out.
Conclusions:
- OMM rupture mechanism in MPT is more complex than previously thought.
- IMM herniation is a key event preceding or coinciding with OMM rupture.
- The timing of IMM permeabilization relative to OMM rupture influences mitochondrial protein release pathways.
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