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Published on: February 9, 2024
p38 MAPK signaling mediates mitochondrial apoptosis in cancer cells induced by oleanolic acid
1Institutes of Oceanology, Chinese Academy of Sciences, Qingdao, China E-mail : zhenglanhong@126.com, linxiukun@yahoo.com.
Abstract:
Oleanolic acid (OA) is a nutritional component widely distributed in various vegetables. Although it has been well recognized for decades that OA exerts certain anti-tumor activity by inducing mitochondria-dependent apoptosis, it is still unclear that what molecular signaling is responsible for this effect. In this study, we employed cancer cell lines, A549, BXPC-3, PANC-1 and U2OS to elucidate the molecular mechanisms underlying OA anti- tumor activity. We found that activation of MAPK pathways, including p-38 MAPK, JNK and ERK, was triggered by OA in both a dose and time-dependent fashion in all the tested cancer cells. Activation was accompanied by cleavage of caspases and PARP as well as cytochrome C release. SB203580 (p38 MAPK inhibitor), but not SP600125 (JNK inhibitor) and U0126 (ERK inhibitor), rescued the pro-apoptotic effect of OA on A549 and BXPC- 3 cells. OA induced p38 MAPK activation promoted mitochondrial translocation of Bax and Bim, and inhibited Bcl-2 function by enhancing their phosphorylation. OA can induce reactive oxygen species (ROS)-dependent ASK1 activation, and this event was indispensable for p38 MAPK-dependent apoptosis in cancer cells. In vivo, p38 MAPK knockdown A549 tumors proved resistant to the growth-inhibitory effect of OA. Collectively, we elucidated that activation of ROS/ASK1/p38 MAPK pathways is responsible for the apoptosis stimulated by OA in cancer cells. Our finding can contribute to a better understanding of molecular mechanisms underlying the antitumor activity of nutritional components.
Insights
Oleanolic acid triggers cancer cell death by activating the ROS/ASK1/p38 MAPK pathway. This molecular pathway is crucial for the anti-tumor effects of this dietary compound.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Oleanolic acid (OA) is a natural compound found in vegetables with known anti-tumor properties.
- The precise molecular mechanisms, particularly the signaling pathways, driving OA-induced apoptosis remain incompletely understood.
Purpose of the Study:
- To elucidate the molecular signaling pathways responsible for the anti-tumor activity of Oleanolic acid.
- To investigate the role of MAPK pathways in OA-mediated cancer cell apoptosis.
Main Methods:
- Utilized human cancer cell lines (A549, BXPC-3, PANC-1, U2OS) and in vivo tumor models.
- Analyzed activation of MAPK pathways (p38 MAPK, JNK, ERK), caspase cleavage, PARP cleavage, and cytochrome C release.
- Employed specific inhibitors (SB203580, SP600125, U0126) and gene knockdown (p38 MAPK).
Main Results:
- OA activated p38 MAPK, JNK, and ERK pathways in a dose- and time-dependent manner.
- p38 MAPK activation was critical, as its inhibition (SB203580) rescued OA's pro-apoptotic effect.
- OA induced reactive oxygen species (ROS)-dependent ASK1 activation, which was essential for p38 MAPK-mediated apoptosis.
Conclusions:
- The study identified the ROS/ASK1/p38 MAPK signaling cascade as the key mediator of OA-induced apoptosis in cancer cells.
- p38 MAPK activation promotes mitochondrial apoptosis by influencing Bax, Bim, and Bcl-2.
- These findings enhance understanding of the molecular basis for the anti-cancer effects of dietary components like OA.
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