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Published on: May 26, 2023
Inhibition of mitoNEET induces Pink1-Parkin-mediated mitophagy
Seunghee Lee1, Sangguk Lee1, Seon-Jin Lee2
1School of Biological Sciences, College of Natural Sciences, University of Ulsan, Ulsan 44610, Korea.
Abstract:
MitoNEET, a mitochondrial outer membrane protein containing the Asn-Glu-Glu-Thr (NEET) sequence, controls the formation of intermitochondrial junctions and confers autophagy resistance. Moreover, mitoNEET as a mitochondrial substrate undergoes ubiquitination by activated Parkin during the initiation of mitophagy. Therefore, mitoNEET is linked to the regulation of autophagy and mitophagy. Mitophagy is the selective removal of the damaged or unnecessary mitochondria, which is crucial to sustaining mitochondrial quality control. In numerous human diseases, the accumulation of damaged mitochondria by impaired mitophagy has been observed. However, the therapeutic strategy targeting of mitoNEET as a mitophagy-enhancing mediator requires further research. Herein, we confirmed that mitophagy is indeed activated by mitoNEET inhibition. CCCP (carbonyl cyanide m-chlorophenyl hydrazone), which leads to mitochondrial depolarization, induces mitochondrial dysfunction and superoxide production. This, in turn, contributes to the induction of mitophagy; mitoNEET protein levels were initially increased before an increase in LC3-Ⅱ protein following CCCP treatment. Pharmacological inhibition of mitoNEET using mitoNEET Ligand-1 (NL-1) promoted accumulation of Pink1 and Parkin, which are mitophagy-associated proteins, and activation of mitochondria-lysosome crosstalk, in comparison to CCCP alone. Inhibition of mitoNEET using NL-1, or mitoNEET shRNA transfected into RAW264.7 cells, abrogated CCCP-induced ROS and mitochondrial cell death; additionally, it activated the expression of PGC-1α and SOD2, regulators of oxidative metabolism. In particular, the increase in PGC-1α, which is a major regulator of mitochondrial biogenesis, promotes mitochondrial quality control. These results indicated that mitoNEET is a potential therapeutic target in numerous human diseases to enhance mitophagy and protect cells by maintaining a network of healthy mitochondria. [BMB Reports 2022; 55(7): 354-359].
Insights
Inhibiting mitoNEET enhances mitophagy, promoting mitochondrial quality control and offering a potential therapeutic strategy for diseases linked to mitochondrial dysfunction. This research highlights mitoNEET
Area of Science:
- Mitochondrial biology
- Cellular quality control mechanisms
- Autophagy and mitophagy regulation
Background:
- MitoNEET, a mitochondrial outer membrane protein, regulates intermitochondrial junctions and autophagy resistance.
- Mitophagy, the selective removal of damaged mitochondria, is crucial for cellular health and impaired in many diseases.
- MitoNEET acts as a substrate for Parkin during mitophagy initiation, linking it to mitochondrial turnover.
Discussion:
- MitoNEET inhibition activates mitophagy, evidenced by increased Pink1 and Parkin accumulation and enhanced mitochondria-lysosome crosstalk.
- CCCP-induced mitochondrial depolarization and ROS production are modulated by mitoNEET inhibition.
- Inhibition of mitoNEET abrogates CCCP-induced ROS and cell death, promoting oxidative metabolism regulators PGC-1α and SOD2.
Key Insights:
- MitoNEET inhibition demonstrably activates mitophagy.
- Pharmacological inhibition (NL-1) and genetic silencing (shRNA) of mitoNEET protect cells from mitochondrial dysfunction.
- MitoNEET inhibition upregulates PGC-1α, a key regulator of mitochondrial biogenesis and quality control.
Outlook:
- MitoNEET emerges as a promising therapeutic target for enhancing mitophagy.
- Targeting mitoNEET could offer a novel strategy for treating diseases associated with impaired mitophagy and mitochondrial damage.
- Further research into mitoNEET-mediated mitophagy enhancement is warranted for therapeutic applications.
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