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Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
Mitochondrial ROS contribute to oridonin-induced HepG2 apoptosis through PARP activation
Xiaoning Liu1, Jingjing Kang1, Hui Wang1
1Department of Biochemistry, School of Medicine, Huanghe College of Science and Technology, Zhengzhou, Henan 450063, P.R. China.
Abstract:
Oridonin, the main active constituent of Rabdosia rubescens, is known to exert antitumor activity via the induction of apoptosis in numerous types of human cancer cells. However, the underlying regulatory mechanisms of mitochondrial ROS in oridonin-induced HepG2 apoptosis remain largely unknown, due to limitations of subcellular imaging resolution. Previously, it has been suggested that mitochondria serve a potential role in sensing and signaling cellular redox changes in vital biological processes such as cell death and the abiotic stress response, based on studies involving the mitochondrial-targeted redox-sensitive green fluorescent protein (GFP). To address this, a mitochondrial-targeted Grx1-roGFP2 (mtGrx1-roGFP2) biosensor was implemented to monitor real-time mitochondrial redox changes of HepG2 cells in response to either H2O2/DTT or oridonin/SS31 treatment. It was determined that oridonin caused a perturbation in mitochondrial redox status, which in turn contributed to oridonin-induced apoptosis. Furthermore, a novel mechanism underlying the regulation of mitochondrial redox changes in oridonin-induced HepG2 apoptosis, presumably dependent on PARP cleavage, was proposed. In conclusion, the present study provides evidence in support of mitochondrial redox changes as a potential mediator in the apoptotic activities of oridonin in HepG2 cells, which provides insight into the molecular mechanisms by which mitochondrial redox signaling regulates oridonin-induced apoptosis in cancer therapy, and the development of mitochondria-specific oridonin as a promising novel anticancer therapeutic strategy.
Insights
Oridonin induces cancer cell death by altering mitochondrial redox balance. This study reveals a novel mechanism involving mitochondrial redox signaling in oridonin-induced apoptosis, offering new therapeutic strategies.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Oridonin, from Rabdosia rubescens, shows antitumor effects by inducing apoptosis.
- Mitochondrial reactive oxygen species (ROS) role in oridonin-induced HepG2 apoptosis is unclear.
- Mitochondria may sense and signal cellular redox changes.
Purpose of the Study:
- To investigate real-time mitochondrial redox changes in HepG2 cells treated with oridonin.
- To elucidate the role of mitochondrial redox status in oridonin-induced apoptosis.
- To propose a novel mechanism for mitochondrial redox regulation in this process.
Main Methods:
- Utilized a mitochondrial-targeted Grx1-roGFP2 (mtGrx1-roGFP2) biosensor.
- Monitored real-time mitochondrial redox changes in HepG2 cells.
- Administered treatments including H2O2/DTT and oridonin/SS31.
Main Results:
- Oridonin treatment perturbed mitochondrial redox status in HepG2 cells.
- Altered mitochondrial redox state contributed to oridonin-induced apoptosis.
- A novel mechanism, potentially involving PARP cleavage, was proposed for redox regulation.
Conclusions:
- Mitochondrial redox changes mediate oridonin-induced apoptosis in HepG2 cells.
- Provides insight into mitochondrial redox signaling in cancer therapy.
- Suggests mitochondria-specific oridonin as a potential anticancer therapeutic strategy.
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