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Published on: June 7, 2024
SEC62 at mitochondria-associated membranes drives MASH progression by suppressing ATAD3B-mediated mitochondrial
Junchao Lin1, Tong Wu2, Chen Wang2
1State Key Laboratory of Holistic Integrative Management of Gastrointestinal Cancers and National Clinical Research Center for Digestive Diseases, Xijing Hospital of Digestive Diseases, Fourth Military Medical University, Xi'an, China; Department of Endoscopy Center, Zhongshan Hospital (Xiamen), Fudan University, Xiamen, China.
Background:
The progression of metabolic dysfunction-associated steatohepatitis (MASH) involves chronic, irreversible inflammatory responses linked to intracellular organelle dysfunction. While endoplasmic reticulum (ER) stress and mitochondrial impairment are recognized as critical drivers, the precise molecular mechanisms governing inter-organelle communication in this disease context remain incompletely understood.
Aim:
This study aimed to investigate the role of the ER transmembrane protein SEC62 in MASH pathogenesis. Specifically, it sought to determine whether SEC62 expression is altered in MASH, define its functional impact on disease phenotypes, and elucidate the mechanistic pathway through which it regulates mitochondrial homeostasis and inflammation.
Results:
SEC62 was upregulated in both human and mouse MASH livers. Hepatocyte-specific SEC62 overexpression worsened hepatic steatosis, inflammation, and mitochondrial damage, whereas SEC62 knockout ameliorated these features. Mechanistically, SEC62 interacted directly with ATAD3B at the mitochondria-associated membranes (MAMs) interface, leading to the significant downregulation of ATAD3B expression. This SEC62-ATAD3B axis resulted in defective mitophagy, increased mitochondrial reactive oxygen species (ROS) production, and amplified inflammatory responses.
Conclusion:
Our results demonstrate that SEC62 is a novel regulator of MAMs that drives MASH progression. By interacting with and suppressing ATAD3B, SEC62 disrupts mitochondrial quality control, leading to oxidative stress and inflammation. Together, these findings define a specific molecular mechanism of organelle interplay in MASH and position SEC62 as a potential therapeutic target for intervention.
Insights
Metabolic dysfunction-associated steatohepatitis (MASH) involves endoplasmic reticulum (ER) stress and mitochondrial dysfunction. This study reveals SEC62 protein drives MASH by disrupting mitochondrial quality control, offering a potential therapeutic target.
Area of Science:
- Cell Biology
- Hepatology
- Molecular Medicine
Background:
- Metabolic dysfunction-associated steatohepatitis (MASH) progression is driven by chronic inflammation and organelle dysfunction.
- Endoplasmic reticulum (ER) stress and mitochondrial impairment are key contributors, but inter-organelle communication mechanisms are unclear.
Purpose of the Study:
- Investigate the role of ER transmembrane protein SEC62 in MASH pathogenesis.
- Determine SEC62 expression changes in MASH.
- Elucidate SEC62's mechanism in regulating mitochondrial homeostasis and inflammation.
Main Methods:
- Analysis of SEC62 expression in human and mouse MASH livers.
- Assessment of SEC62's functional impact using hepatocyte-specific overexpression and knockout models.
- Investigation of SEC62 interaction with ATAD3B at mitochondria-associated membranes (MAMs).
Main Results:
- SEC62 was upregulated in MASH livers.
- SEC62 overexpression exacerbated MASH phenotypes; SEC62 knockout ameliorated them.
- SEC62 interacted with ATAD3B, downregulating its expression, leading to defective mitophagy, increased ROS, and inflammation.
Conclusions:
- SEC62 is a novel regulator of MAMs that drives MASH progression.
- The SEC62-ATAD3B axis disrupts mitochondrial quality control, causing oxidative stress and inflammation.
- SEC62 represents a potential therapeutic target for MASH.
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