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Murine Myocardial Infarction Model using Permanent Ligation of Left Anterior Descending Coronary Artery
Published on: August 16, 2019
Mitofilin Heterozygote Mice Display an Increase in Myocardial Injury and Inflammation after Ischemia/Reperfusion
Yansheng Feng1, Abdulhafiz Imam Aliagan1, Nathalie Tombo1
1Department of Cellular and Integrative Physiology, School of Medicine, The University of Texas Health Science Center at San Antonio, 7703 Floyd Curl Dr., San Antonio, TX 78229, USA.
Abstract:
Mitochondrial inner membrane protein (Mitofilin/Mic60) is part of a big complex that constituent the mitochondrial inner membrane organizing system (MINOS), which plays a critical role in maintaining mitochondrial architecture and function. We recently showed that Mitofilin physically binds to Cyclophilin D, and disruption of this interaction promotes the opening of mitochondrial permeability transition pore (mPTP) and determines the extent of I/R injury. Here, we investigated whether Mitofilin knockout in the mouse enhances myocardial injury and inflammation after I/R injury. We found that full-body deletion (homozygote) of Mitofilin induces a lethal effect in the offspring and that a single allele expression of Mitofilin is sufficient to rescue the mouse phenotype in normal conditions. Using non-ischemic hearts from wild-type (WT) and Mitofilin+/- (HET) mice, we report that the mitochondria structure and calcium retention capacity (CRC) required to induce the opening of mPTP were similar in both groups. However, the levels of mitochondrial dynamics proteins involved in both fusion/fission, including MFN2, DRP1, and OPA1, were slightly reduced in Mitofilin+/- mice compared to WT. After I/R, the CRC and cardiac functional recovery were reduced while the mitochondria structure was more damaged, and myocardial infarct size was increased in Mitofilin+/- mice compared to WT. Mitofilin+/- mice exhibited an increase in the mtDNA release in the cytosol and ROS production, as well as dysregulated SLC25As (3, 5, 11, and 22) solute carrier function, compared to WT. In addition, Mitofilin+/- mice displayed an increase in the transcript of pro-inflammatory markers, including IL-6, ICAM, and TNF-α. These results suggest that Mitofilin knockdown induces mitochondrial cristae damage that promotes dysregulation of SLC25As solute carriers, leading to an increase in ROS production and reduction in CRC after I/R. These effects are associated with an increase in the mtDNA release into the cytosol, where it activates signaling cascades leading to nuclear transcription of pro-inflammatory cytokines that aggravate I/R injury.
Insights
Mitofilin deficiency in mice exacerbates heart injury and inflammation after ischemia-reperfusion (I/R). Reduced Mitofilin impairs mitochondrial function, increasing damage and inflammatory responses.
Area of Science:
- Mitochondrial biology
- Cardiovascular research
- Cellular injury mechanisms
Background:
- Mitofilin (Mic60) is crucial for mitochondrial inner membrane organization and function.
- Mitofilin interacts with Cyclophilin D, influencing mitochondrial permeability transition pore (mPTP) opening and injury.
Purpose of the Study:
- To investigate the role of Mitofilin in myocardial injury and inflammation following ischemia-reperfusion (I/R) injury.
- To assess the impact of Mitofilin deficiency on cardiac structure, function, and inflammatory markers post-I/R.
Main Methods:
- Utilized Mitofilin knockout (homozygote lethal, heterozygote viable) and wild-type mice.
- Evaluated mitochondrial structure, calcium retention capacity (CRC), and cardiac function.
- Assessed mitochondrial dynamics proteins, mtDNA release, reactive oxygen species (ROS) production, solute carrier function, and inflammatory gene expression after I/R.
Main Results:
- Mitofilin heterozygotes (HET) showed reduced cardiac function and increased infarct size post-I/R compared to wild-type (WT).
- HET mice exhibited mitochondrial damage, increased mtDNA release, elevated ROS production, and dysregulated solute carriers.
- Pro-inflammatory markers (IL-6, ICAM, TNF-α) were significantly upregulated in HET mice post-I/R.
Conclusions:
- Mitofilin deficiency exacerbates myocardial I/R injury by damaging mitochondrial cristae and impairing solute carrier function.
- This leads to increased ROS production, reduced CRC, and elevated mtDNA release, activating inflammatory pathways.
- Mitofilin is essential for maintaining cardiac resilience against I/R-induced injury and inflammation.

