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Time-Lapse Video Microscopy for Assessment of EYFP-Parkin Aggregation as a Marker for Cellular Mitophagy
Published on: May 4, 2016
Mst1 deletion reduces septic cardiomyopathy via activating Parkin-related mitophagy
Xiuling Shang1, Kaiyang Lin2, Yingrui Zhang1
1Department of Critical Care Medicine, Fujian Provincial Hospital, Fujian, Provincial Center for Critical Care Medicine, Fujian Medical University, Fuzhou, Fujian, China.
Abstract:
Cardiomyocyte function and viability are highly modulated by mammalian Ste20-like kinase 1 (Mst1)-Hippo pathway and mitochondria. Mitophagy, a kind of mitochondrial autophagy, is a protective program to attenuate mitochondrial damage. However, the relationship between Mst1 and mitophagy in septic cardiomyopathy has not been explored. In the present study, Mst1 knockout mice were used in a lipopolysaccharide (LPS)-induced septic cardiomyopathy model. Mitophagy activity was measured via immunofluorescence, Western blotting, and enzyme-linked immunosorbent assay. Pathway blocker and small interfering RNA were used to perform the loss-of-function assay. The results demonstrated that Mst1 was rapidly increased in response to LPS stress. Knockout of Mst1 attenuated LPS-mediated inflammation damage, reduced cardiomyocyte death, and improved cardiac function. At the molecular levels, LPS treatment activated mitochondrial damage, such as mitochondrial respiratory dysfunction, mitochondrial potential reduction, mitochondrial ATP depletion, and caspase family activation. Interestingly, in response to mitochondrial damage, Mst1 deletion activated mitophagy which attenuated LPS-mediated mitochondrial damage. However, inhibition of mitophagy via inhibiting parkin mitophagy abolished the protective influences of Mst1 deletion on mitochondrial homeostasis and cardiomyocyte viability. Overall, our results demonstrated that septic cardiomyopathy is linked to Mst1 upregulation which is followed by a drop in the protective mitophagy.
Insights
Mammalian Ste20-like kinase 1 (Mst1) is upregulated in septic cardiomyopathy, impairing mitophagy. Mst1 knockout protects the heart by enhancing mitophagy and reducing inflammation and cardiomyocyte death.
Area of Science:
- Cardiology
- Cell Biology
- Molecular Biology
Background:
- Cardiomyocyte function is regulated by the Mst1-Hippo pathway and mitochondria.
- Mitophagy, a crucial mitochondrial quality control process, protects against cellular damage.
- The role of Mst1 in mitophagy during septic cardiomyopathy remains unclear.
Purpose of the Study:
- To investigate the relationship between Mst1 and mitophagy in a mouse model of lipopolysaccharide (LPS)-induced septic cardiomyopathy.
- To elucidate the molecular mechanisms underlying Mst1's influence on cardiac function and mitochondrial homeostasis during sepsis.
Main Methods:
- Utilized Mst1 knockout mice in an LPS-induced septic cardiomyopathy model.
- Assessed mitophagy activity using immunofluorescence, Western blotting, and ELISA.
- Employed pathway blockers and small interfering RNA for loss-of-function studies.
Main Results:
- Mst1 expression increased significantly in response to LPS.
- Mst1 knockout attenuated LPS-induced inflammation, reduced cardiomyocyte death, and improved cardiac function.
- Mst1 deletion activated mitophagy, mitigating mitochondrial damage and preserving cardiomyocyte viability, while mitophagy inhibition abolished these protective effects.
Conclusions:
- Septic cardiomyopathy is associated with Mst1 upregulation and a subsequent decrease in protective mitophagy.
- Mst1 plays a critical role in regulating mitophagy and cardiac protection during sepsis.
- Targeting Mst1 or enhancing mitophagy may offer therapeutic strategies for septic cardiomyopathy.
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