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Mitochondria and mitophagy: the yin and yang of cell death control
Dieter A Kubli1, Åsa B Gustafsson
1Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California, San Diego, La Jolla, CA 92093, USA.
Abstract:
Mitochondria are primarily responsible for providing the contracting cardiac myocyte with a continuous supply of ATP. However, mitochondria can rapidly change into death-promoting organelles. In response to changes in the intracellular environment, mitochondria become producers of excessive reactive oxygen species and release prodeath proteins, resulting in disrupted ATP synthesis and activation of cell death pathways. Interestingly, cells have developed a defense mechanism against aberrant mitochondria that can cause harm to the cell. This mechanism involves selective sequestration and subsequent degradation of the dysfunctional mitochondrion before it causes activation of cell death. Induction of mitochondrial autophagy, or mitophagy, results in selective clearance of damaged mitochondria in cells. In response to stress such as ischemia/reperfusion, prosurvival and prodeath pathways are concomitantly activated in cardiac myocytes. Thus, there is a delicate balance between life and death in the myocytes during stress, and the final outcome depends on the complex cross-talk between these pathways. Mitophagy functions as an early cardioprotective response, favoring adaptation to stress by removing damaged mitochondria. In contrast, increased oxidative stress and apoptotic proteases can inactivate mitophagy, allowing for the execution of cell death. Herein, we discuss the importance of mitochondria and mitophagy in cardiovascular health and disease and provide a review of our current understanding of how these processes are regulated.
Insights
Mitochondria are vital for heart cell energy, but can trigger cell death. Mitophagy, a cellular cleanup process, removes damaged mitochondria, protecting the heart from stress and disease.
Area of Science:
- Cardiovascular Biology
- Cellular Stress Response
- Mitochondrial Dynamics
Background:
- Mitochondria supply ATP for cardiac myocyte contraction.
- Dysfunctional mitochondria can promote cell death via reactive oxygen species and protein release.
- Cells possess a defense mechanism to eliminate damaged mitochondria.
Purpose of the Study:
- To review the role of mitochondria and mitophagy in cardiovascular health and disease.
- To discuss the regulation of mitochondrial quality control in cardiac myocytes.
- To highlight the balance between prosurvival and prodeath pathways during cardiac stress.
Main Methods:
- Review of existing literature on mitochondrial function and mitophagy.
- Analysis of cellular pathways involved in mitochondrial quality control.
- Discussion of the interplay between stress responses and mitophagy in the heart.
Main Results:
- Mitophagy selectively clears damaged mitochondria, acting as an early cardioprotective response.
- Cardiac stress, like ischemia/reperfusion, activates both prosurvival and prodeath pathways.
- Oxidative stress and apoptotic factors can inhibit mitophagy, leading to cell death.
Conclusions:
- Mitophagy is crucial for maintaining cardiovascular health by removing detrimental mitochondria.
- The balance between mitophagy and cell death pathways dictates myocyte fate during stress.
- Understanding mitophagy regulation is key to developing therapies for cardiovascular diseases.
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