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Assessment of Mitochondrial Fission/Fusion Dynamics in Kidney Proximal Tubular Cells
Published on: November 14, 2025
Mitofusin-2 maintains mitochondrial structure and contributes to stress-induced permeability transition in cardiac
Kyriakos N Papanicolaou1, Ramzi J Khairallah, Gladys A Ngoh
1Molecular Cardiology/Whitaker Cardiovascular Institute, Boston University School of Medicine, 715 Albany Street, W611, Boston, MA 02118, USA.
Abstract:
Mitofusin-2 (Mfn-2) is a dynamin-like protein that is involved in the rearrangement of the outer mitochondrial membrane. Research using various experimental systems has shown that Mfn-2 is a mediator of mitochondrial fusion, an evolutionarily conserved process responsible for the surveillance of mitochondrial homeostasis. Here, we find that cardiac myocyte mitochondria lacking Mfn-2 are pleiomorphic and have the propensity to become enlarged. Consistent with an underlying mild mitochondrial dysfunction, Mfn-2-deficient mice display modest cardiac hypertrophy accompanied by slight functional deterioration. The absence of Mfn-2 is associated with a marked delay in mitochondrial permeability transition downstream of Ca(2+) stimulation or due to local generation of reactive oxygen species (ROS). Consequently, Mfn-2-deficient adult cardiomyocytes are protected from a number of cell death-inducing stimuli and Mfn-2 knockout hearts display better recovery following reperfusion injury. We conclude that in cardiac myocytes, Mfn-2 controls mitochondrial morphogenesis and serves to predispose cells to mitochondrial permeability transition and to trigger cell death.
Insights
Mitofusin-2 (Mfn-2) deficiency in cardiac cells leads to enlarged mitochondria and mild heart dysfunction. However, these Mfn-2-deficient cells show delayed cell death and improved recovery after injury, suggesting a protective role.
Area of Science:
- Mitochondrial biology
- Cardiovascular research
- Cell death pathways
Background:
- Mitofusin-2 (Mfn-2) is crucial for mitochondrial fusion and homeostasis.
- Mitochondrial dynamics are vital for cardiac myocyte function and survival.
Purpose of the Study:
- To investigate the role of Mfn-2 in cardiac myocyte mitochondria.
- To determine the impact of Mfn-2 deficiency on cardiac function and cell death.
Main Methods:
- Mfn-2 deficient mice and isolated adult cardiomyocytes were used.
- Mitochondrial morphology, function, and cell death responses were assessed.
Main Results:
- Mfn-2 deficiency resulted in pleomorphic and enlarged cardiac mitochondria.
- Mfn-2 knockout mice showed modest cardiac hypertrophy and impaired function.
- Absence of Mfn-2 delayed mitochondrial permeability transition and protected cardiomyocytes from death.
- Mfn-2 deficient hearts exhibited improved recovery after reperfusion injury.
Conclusions:
- Mfn-2 regulates mitochondrial morphology in cardiac myocytes.
- Mfn-2 predisposes cardiac cells to mitochondrial permeability transition and cell death.
- Mfn-2 deficiency confers protection against cardiac injury and cell death.
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