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A Flow Cytometry-based Assay for Measuring Mitochondrial Membrane Potential in Cardiac Myocytes After Hypoxia/Reoxygenation
Published on: July 13, 2018
TCH-165 attenuates cardiac ischaemia/reperfusion injury by balancing mitochondrial dynamics via increasing proteasome
Jing Gao1, Hui-Xiang Su1, Pang-Bo Li1
1Department of Emergency Medicine, Beijing Key Laboratory of Cardiopulmonary Cerebral Resuscitation, Beijing Chao-Yang Hospital, Capital Medical University, No. 8 Worker's Stadium South Road, Beijing, 100020, China.
Abstract:
The proteasome is the main complex responsible for maintaining intracellular protein homeostasis, impairment of which is associated with cardiac ischaemia/reperfusion (I/R) injury. The small molecule TCH-165 has been found to activate the 20S proteasome to remove disordered proteins in multiple myeloma and glioblastoma. However, the preventive effect of TCH-165 against I/R-mediated cardiac impairment in mice remains largely unknown. Here, a cardiac I/R model was established in mice. Heart function was assessed with echocardiography. Cardiac infarction, myocyte death, and superoxide level were evaluated by 2,3,5-triphenyltetrazolium chloride (TTC)-Evans blue staining, terminal deoxynucleotidyl transferase-mediated dUTP nick and labelling (TUNEL) assay and immunostaining, respectively. Our results showed that TCH-165 treatment markedly ameliorated I/R-mediated cardiac dysfunction and decreased the infarct size, apoptosis, and superoxide levels. Mechanistically, TCH-165 increased immunoproteasome subunit expression/activity, increasing pro-fission protein dynamin-1-like protein (DNM1L, also known as DRP1) degradation and the expression of the pro-fusion proteins mitofusin 1/2 (Mfn1/2) and thereby leading to mitochondrial fission/fusion balance. In vitro experiments confirmed that inhibition of proteasome activity by epoxomicin abolished the protective effect of TCH-165 against hypoxia/reoxygenation (H/R)-induced increases in cardiomyocyte apoptosis, superoxide production and mitochondrial fission. In summary, TCH-165 is a newly discovered inducer of immunoproteasome activity that exerts a preventive effect against cardiac I/R damage by targeting Drp1 degradation, indicating that it may be as a potential therapeutic candidate for ischaemic heart disease.
Insights
The small molecule TCH-165 protects against cardiac ischemia/reperfusion injury by activating the proteasome. This treatment reduces heart damage, apoptosis, and superoxide levels, offering a potential therapy for ischemic heart disease.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Proteasome Biology
Background:
- Proteasome dysfunction contributes to cardiac ischemia/reperfusion (I/R) injury.
- The small molecule TCH-165 activates the 20S proteasome, clearing disordered proteins.
- The protective role of TCH-165 in cardiac I/R injury is not well understood.
Purpose of the Study:
- To investigate the preventive effect of TCH-165 against cardiac I/R injury in a mouse model.
- To elucidate the underlying molecular mechanisms of TCH-165's cardioprotective action.
Main Methods:
- Established a cardiac I/R mouse model.
- Assessed heart function using echocardiography.
- Quantified infarct size, myocyte death (TUNEL assay), and superoxide levels.
- Investigated proteasome activity, immunoproteasome subunits, and mitochondrial dynamics (DNM1L, Mfn1/2).
- Validated findings using epoxomicin to inhibit proteasome activity in vitro.
Main Results:
- TCH-165 treatment significantly improved cardiac function post-I/R.
- Reduced infarct size, cardiomyocyte apoptosis, and superoxide levels were observed with TCH-165.
- TCH-165 enhanced immunoproteasome activity, promoting degradation of Drp1 and restoring mitochondrial fission/fusion balance.
- Proteasome inhibition abolished TCH-165's protective effects against hypoxia/reoxygenation injury in vitro.
Conclusions:
- TCH-165 is a novel immunoproteasome activator.
- TCH-165 demonstrates a preventive effect against cardiac I/R damage by targeting Drp1 degradation.
- TCH-165 represents a potential therapeutic candidate for treating ischemic heart disease.

