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Published on: March 24, 2023
Autophagy-competent mitochondrial translation elongation factor TUFM inhibits caspase-8-mediated apoptosis
Chang-Yong Choi1, Mai Tram Vo1, John Nicholas1
1Department of Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, MD, 21287, USA.
Abstract:
Mitochondria support multiple cell functions, but an accumulation of dysfunctional or excessive mitochondria is detrimental to cells. We previously demonstrated that a defect in the autophagic removal of mitochondria, termed mitophagy, leads to the acceleration of apoptosis induced by herpesvirus productive infection. However, the exact molecular mechanisms underlying activation of mitophagy and regulation of apoptosis remain poorly understood despite the identification of various mitophagy-associated proteins. Here, we report that the mitochondrial translation elongation factor Tu, a mitophagy-associated protein encoded by the TUFM gene, locates in part on the outer membrane of mitochondria (OMM) where it acts as an inhibitor of altered mitochondria-induced apoptosis through its autophagic function. Inducible depletion of TUFM potentiated caspase-8-mediated apoptosis in virus-infected cells with accumulation of altered mitochondria. In addition, TUFM depletion promoted caspase-8 activation induced by treatment with TNF-related apoptosis-inducing ligand in cancer cells, potentially via dysregulation of mitochondrial dynamics and mitophagy. Importantly, we revealed the existence of and structural requirements for autophagy-competent TUFM on the OMM; the GxxxG motif within the N-terminal mitochondrial targeting sequences of TUFM was required for self-dimerization and mitophagy. Furthermore, we found that autophagy-competent TUFM was subject to ubiquitin-proteasome-mediated degradation but stabilized upon mitophagy or autophagy activation. Moreover, overexpression of autophagy-competent TUFM could inhibit caspase-8 activation. These studies extend our knowledge of mitophagy regulation of apoptosis and could provide a novel strategic basis for targeted therapy of cancer and viral diseases.
Insights
Mitochondrial translation elongation factor Tu (TUFM) inhibits apoptosis by promoting mitophagy. Depleting TUFM accelerates apoptosis in virus-infected cells and cancer cells, offering therapeutic potential.
Area of Science:
- Cell Biology
- Molecular Biology
- Immunology
Background:
- Mitochondria are vital for cell function, but their accumulation when dysfunctional is harmful.
- Mitophagy, the autophagic removal of mitochondria, is crucial for cellular health.
- Defects in mitophagy accelerate apoptosis during viral infections, but regulatory mechanisms are unclear.
Purpose of the Study:
- To elucidate the molecular mechanisms of mitophagy and apoptosis regulation.
- To investigate the role of mitochondrial translation elongation factor Tu (TUFM) in these processes.
- To explore the therapeutic potential of targeting TUFM in cancer and viral diseases.
Main Methods:
- Investigated TUFM localization on the outer mitochondrial membrane (OMM).
- Utilized inducible depletion of TUFM in virus-infected and cancer cells.
- Analyzed caspase-8 activation, mitochondrial dynamics, and mitophagy.
- Identified structural requirements (GxxxG motif) for TUFM's autophagic function.
Main Results:
- TUFM on the OMM inhibits apoptosis via mitophagy.
- TUFM depletion enhances caspase-8-mediated apoptosis in virus-infected cells and TNF-related apoptosis-inducing ligand-treated cancer cells.
- The GxxxG motif in TUFM is essential for self-dimerization and mitophagy.
- TUFM is degraded by the ubiquitin-proteasome system but stabilized during mitophagy/autophagy.
Conclusions:
- TUFM acts as a key regulator of apoptosis through its role in mitophagy.
- TUFM's autophagic function on the OMM is critical for preventing excessive apoptosis.
- Targeting TUFM offers a potential therapeutic strategy for viral infections and cancers.
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