Targeting mitophagy to promote apoptosis is a potential therapeutic strategy for cancer
Yancheng Tang1,2,3, Liming Wang1, Jiangjiang Qin3
1School of Biomedical Science, Hunan University, Changsha, Hunan, China.
Abstract:
Many anticancer agents exert cytotoxicity and trigger apoptosis through the induction of mitochondrial dysfunction. Mitophagy, as a key mitochondrial quality control mechanism, can remove damaged mitochondria in an effective and timely manner, which may result in drug resistance. Although the implication of mitophagy in neurodegenerative diseases has been extensively studied, the role and mechanism of mitophagy in tumorigenesis and cancer therapy are largely unknown. In a recent study, we found that the inhibition of PINK1-PRKN-mediated mitophagy can significantly enhance the anticancer efficacy of magnolol, a natural product with potential anticancer properties. On the one hand, magnolol can induce severe mitochondrial dysfunction, including mitochondrial depolarization, excessive mitochondrial fragmentation and the generation of mitochondrial ROS, leading to apoptosis. On the other hand, magnolol induces PINK1-PRKN-dependent mitophagy via activation of two rounds of feedforward amplification loops. The blockage of mitophagy through genetic or pharmacological approaches promotes rather than attenuates magnolol-induced cell death. Furthermore, inhibition of mitophagy by using distinct inhibitors targeting different mitophagic stages effectively enhances magnolol's anticancer efficacy in vivo. Taken together, our findings strongly indicate that manipulation of mitophagy in cancer treatment will be a promising therapeutic strategy for overcoming cancer drug resistance and improving the therapeutic efficacy of anticancer agents.
Insights
Inhibiting mitophagy, a cellular process removing damaged mitochondria, can enhance the effectiveness of magnolol, a natural compound, against cancer. This strategy shows promise for overcoming drug resistance in cancer therapy.
Area of Science:
- Mitochondrial Biology
- Cancer Therapeutics
- Cellular Quality Control
Background:
- Anticancer agents often induce apoptosis via mitochondrial dysfunction.
- Mitophagy, a key mitochondrial quality control pathway, can contribute to drug resistance.
- The role of mitophagy in cancer therapy remains largely unexplored.
Purpose of the Study:
- To investigate the role of PINK1-PRKN-mediated mitophagy in cancer.
- To determine if inhibiting mitophagy can enhance the anticancer efficacy of magnolol.
- To elucidate the mechanisms by which magnolol affects mitochondria and mitophagy.
Main Methods:
- Induction of mitochondrial dysfunction and apoptosis by magnolol.
- Analysis of PINK1-PRKN-dependent mitophagy activation.
- Inhibition of mitophagy using genetic and pharmacological approaches.
- Assessment of magnolol's efficacy in vitro and in vivo.
Main Results:
- Magnolol induces severe mitochondrial dysfunction, including depolarization, fragmentation, and ROS generation.
- Magnolol activates PINK1-PRKN-dependent mitophagy through feedforward loops.
- Inhibition of mitophagy significantly enhances magnolol-induced cancer cell death.
- Pharmacological inhibition of mitophagy improves magnolol's anticancer efficacy in vivo.
Conclusions:
- Mitophagy plays a critical role in the response to magnolol treatment.
- Inhibiting mitophagy is a viable strategy to overcome drug resistance in cancer.
- Targeting mitophagy holds promise for improving the efficacy of anticancer agents.
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