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Sensitive Measurement of Mitophagy by Flow Cytometry Using the pH-dependent Fluorescent Reporter mt-Keima
Published on: August 12, 2018
Basal Gp78-dependent mitophagy promotes mitochondrial health and limits mitochondrial ROS
Parsa Alan1, Kurt R Vandevoorde1, Bharat Joshi1
1Life Sciences Institute, Department of Cellular and Physiological Sciences, School of Biomedical Engineering, University of British Columbia, 2350 Health Sciences Mall, Vancouver, BC, V6T 1Z3, Canada.
Abstract:
Mitochondria are major sources of cytotoxic reactive oxygen species (ROS), such as superoxide and hydrogen peroxide, that when uncontrolled contribute to cancer progression. Maintaining a finely tuned, healthy mitochondrial population is essential for cellular homeostasis and survival. Mitophagy, the selective elimination of mitochondria by autophagy, monitors and maintains mitochondrial health and integrity, eliminating damaged ROS-producing mitochondria. However, mechanisms underlying mitophagic control of mitochondrial homeostasis under basal conditions remain poorly understood. E3 ubiquitin ligase Gp78 is an endoplasmic reticulum membrane protein that induces mitochondrial fission and mitophagy of depolarized mitochondria. Here, we report that CRISPR/Cas9 knockout of Gp78 in HT-1080 fibrosarcoma cells increased mitochondrial volume, elevated ROS production and rendered cells resistant to carbonyl cyanide m-chlorophenyl hydrazone (CCCP)-induced mitophagy. These effects were phenocopied by knockdown of the essential autophagy protein ATG5 in wild-type HT-1080 cells. Use of the mito-Keima mitophagy probe confirmed that Gp78 promoted both basal and damage-induced mitophagy. Application of a spot detection algorithm (SPECHT) to GFP-mRFP tandem fluorescent-tagged LC3 (tfLC3)-positive autophagosomes reported elevated autophagosomal maturation in wild-type HT-1080 cells relative to Gp78 knockout cells, predominantly in proximity to mitochondria. Mitophagy inhibition by either Gp78 knockout or ATG5 knockdown reduced mitochondrial potential and increased mitochondrial ROS. Live cell analysis of tfLC3 in HT-1080 cells showed the preferential association of autophagosomes with mitochondria of reduced potential. Xenograft tumors of HT-1080 knockout cells show increased labeling for mitochondria and the cell proliferation marker Ki67 and reduced labeling for the TUNEL cell death reporter. Basal Gp78-dependent mitophagic flux is, therefore, selectively associated with reduced potential mitochondria promoting maintenance of a healthy mitochondrial population, limiting ROS production and tumor cell proliferation.
Insights
The E3 ubiquitin ligase Gp78 promotes mitophagy, clearing damaged mitochondria and limiting reactive oxygen species (ROS) production. Loss of Gp78 impairs mitophagy, increasing ROS and promoting tumor cell proliferation.
Area of Science:
- Cell Biology
- Cancer Biology
- Mitochondrial Biology
Background:
- Mitochondria generate reactive oxygen species (ROS), contributing to cancer progression.
- Mitophagy, the selective removal of mitochondria, is crucial for maintaining cellular homeostasis.
- Basal mechanisms controlling mitochondrial health via mitophagy are not fully understood.
Purpose of the Study:
- To investigate the role of E3 ubiquitin ligase Gp78 in basal mitophagy.
- To elucidate Gp78's mechanism in maintaining mitochondrial quality control.
- To assess the impact of Gp78-mediated mitophagy on tumor cell behavior.
Main Methods:
- CRISPR/Cas9 knockout of Gp78 in HT-1080 fibrosarcoma cells.
- Knockdown of the autophagy protein ATG5.
- Mito-Keima mitophagy probe and tandem fluorescent-tagged LC3 (tfLC3) analysis.
- SPECHT algorithm for autophagosome analysis.
- Xenograft tumor studies.
Main Results:
- Gp78 knockout increased mitochondrial volume and ROS production, while resisting mitophagy induction.
- Gp78 deficiency phenocopied ATG5 knockdown, impairing mitophagy.
- Gp78 promotes both basal and damage-induced mitophagy, with autophagosomes preferentially associating with depolarized mitochondria.
- Gp78 knockout tumors exhibited increased proliferation (Ki67) and mitochondrial labeling, with reduced cell death (TUNEL).
Conclusions:
- Basal Gp78-dependent mitophagy selectively eliminates depolarized mitochondria, maintaining a healthy mitochondrial pool.
- This process limits ROS production and suppresses tumor cell proliferation.
- Gp78 is a key regulator of mitochondrial homeostasis and tumor suppression.
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