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TMBIM6 prevents VDAC1 multimerization and improves mitochondrial quality control to reduce sepsis-related myocardial
Hao Zhou1, Zhe Dai2, Jialei Li2
1School of Medicine, Southern University of Science and Technology, Shenzhen, Guangdong, China; Department of Cardiology, The Sixth Medical Center of People's Liberation Army General Hospital, Beijing, China.
Background:
The regulatory mechanisms involved in mitochondrial quality control (MQC) dysfunction during septic cardiomyopathy (SCM) remain incompletely characterized. Transmembrane BAX inhibitor motif containing 6 (TMBIM6) is an endoplasmic reticulum protein with Ca2+ leak activity that modulates cellular responses to various cellular stressors.
Methods:
In this study, we evaluated the role of TMBIM6 in SCM using cardiomyocyte-specific TMBIM6 knockout (TMBIM6CKO) and TMBIM6 transgenic (TMBIM6TG) mice.
Results:
Myocardial TMBIM6 transcription and expression were significantly downregulated in wild-type mice upon LPS exposure, along with characteristic alterations in myocardial systolic/diastolic function, cardiac inflammation, and cardiomyocyte death. Notably, these alterations were further exacerbated in LPS-treated TMBIM6CKO mice, and largely absent in TMBIM6TG mice. In LPS-treated primary cardiomyocytes, TMBIM6 deficiency further impaired mitochondrial respiration and ATP production, while defective MQC was suggested by enhanced mitochondrial fission, impaired mitophagy, and disrupted mitochondrial biogenesis. Structural protein analysis, Co-IP, mutant TMBIM6 plasmid transfection, and molecular docking assays subsequently indicated that TMBIM6 exerts cardioprotection against LPS-induced sepsis by interacting with and preventing the oligomerization of voltage-dependent anion channel-1 (VDAC1), the major route of mitochondrial Ca2+ uptake.
Conclusion:
We conclude that the TMBIM6-VDAC1 interaction prevents VDAC1 oligomerization and thus sustains mitochondrial Ca2+ homeostasis as well as MQC, contributing to improved myocardial function in SCM.
Insights
Transmembrane BAX inhibitor motif containing 6 (TMBIM6) protects the heart during sepsis by regulating mitochondrial calcium and quality control. This protein interaction prevents damage, improving cardiac function in septic cardiomyopathy.
Area of Science:
- Cardiovascular Biology
- Mitochondrial Biology
- Cellular Stress Response
Background:
- Septic cardiomyopathy (SCM) involves mitochondrial quality control (MQC) dysfunction, but regulatory mechanisms are unclear.
- Transmembrane BAX inhibitor motif containing 6 (TMBIM6) is an endoplasmic reticulum protein influencing cellular stress responses.
Purpose of the Study:
- To investigate the role of TMBIM6 in the pathogenesis of SCM.
- To elucidate the molecular mechanisms by which TMBIM6 affects cardiac function during sepsis.
Main Methods:
- Utilized cardiomyocyte-specific TMBIM6 knockout (TMBIM6CKO) and transgenic (TMBIM6TG) mice.
- Administered LPS to induce sepsis and assessed cardiac function, inflammation, and cardiomyocyte death.
- Performed in vitro studies on primary cardiomyocytes, including mitochondrial respiration assays and MQC assessments.
- Employed protein interaction studies (Co-IP, molecular docking) to identify interacting partners.
Main Results:
- Myocardial TMBIM6 expression decreased in wild-type mice with LPS exposure, worsening cardiac dysfunction.
- TMBIM6 deficiency exacerbated sepsis-induced cardiac damage and mitochondrial dysfunction (respiration, ATP production, fission, mitophagy, biogenesis).
- TMBIM6 interacted with voltage-dependent anion channel-1 (VDAC1), preventing its oligomerization and maintaining mitochondrial calcium homeostasis.
Conclusions:
- TMBIM6 plays a crucial cardioprotective role in SCM by interacting with VDAC1.
- This interaction preserves mitochondrial calcium balance and MQC, thereby improving myocardial function during sepsis.
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