Gartanin induces autophagy through JNK activation which extenuates caspase-dependent apoptosis
Mun-Ock Kim1, Hyun-Sun Lee1, Young-Won Chin2
1Korea Research Institute of Bioscience and Biotechnology (KRIBB), Ochang, ChungBuk 363‑883, Republic of Korea.
Abstract:
Hepatocellular carcinoma (HCC) is the third leading cause of cancer-related death worldwide. Development of novel agents to eradicate liver cancer cells is required for treatment of HCC. Gartanin, a xanthone-type compound isolated from mangosteen, is known to possess potent antioxidant, anti-inflammatory, antifungal and antineoplastic properties. In the present study, we investigated the cytotoxic effect of gartanin on HCC and explored the cell death mechanism. We showed that gartanin induced both the extrinsic and intrinsic apoptotic pathways, which were interconnected by caspase-8, -9 and -3 activation. We also provided convincing evidence that gartanin induced autophagy in various cancer cells, as demonstrated by acridine orange staining of intracellular acidic vesicles, the degradation of p62, the conversion of LC3-I to LC3-II and GFP-LC3 punctate fluorescence. Additionally, gartanin induced the formation of typical autophagosomes and autolysosomes and enhanced the degradation rate of intracellular granule(s), including mitochondria. Notably, gartanin-mediated apoptotic cell death was further potentiated by pretreatment with autophagy inhibitors (3-methyladenine and bafilomycin A1) or small interfering RNAs against the autophagic genes (Atg5). These findings suggested that gartanin-mediated autophagic response protected against eventual cell death induced by gartanin. Moreover, gartanin treatment led to phosphorylation/activation of JNK and JNK-dependent phosphorylation of Bcl-2. Importantly, JNK inhibitor (SP600125) inhibited autophagy yet promoted gartanin-induced apoptosis, indicating a key requirement of the JNK-Bcl-2 pathway in the activation of autophagy by gartanin. Taken together, our data suggested that the JNK-Bcl-2 pathway was the critical regulator of gartanin-induced protective autophagy and a potential drug target for chemotherapeutic combination.
Insights
Gartanin, a compound from mangosteen, triggers both apoptosis and autophagy in liver cancer cells. Autophagy initially protects cells, but inhibiting it enhances gartanin
Area of Science:
- Oncology
- Pharmacology
- Cell Biology
Background:
- Hepatocellular carcinoma (HCC) is a major global cancer-related mortality cause.
- Novel therapeutic agents are crucial for effective HCC treatment.
- Gartanin, a mangosteen-derived xanthone, exhibits antineoplastic properties.
Purpose of the Study:
- To investigate the cytotoxic effects of gartanin on HCC cells.
- To elucidate the cell death mechanisms induced by gartanin.
Main Methods:
- Assessed gartanin's impact on apoptotic pathways (extrinsic and intrinsic).
- Evaluated gartanin-induced autophagy using acridine orange staining, p62 degradation, and LC3 conversion.
- Utilized autophagy inhibitors and siRNA to explore the role of autophagy in gartanin's effects.
- Investigated the involvement of the JNK-Bcl-2 pathway via Western blotting and specific inhibitors.
Main Results:
- Gartanin induced apoptosis via caspase activation and autophagy, evidenced by LC3-II formation and autophagosome generation.
- Autophagy initially protected HCC cells from gartanin-induced death, as inhibiting autophagy potentiated apoptosis.
- Gartanin activated the JNK pathway, leading to Bcl-2 phosphorylation and subsequent autophagy induction.
- Inhibition of JNK blocked autophagy but enhanced gartanin-induced apoptosis.
Conclusions:
- Gartanin triggers both apoptosis and a protective autophagic response in HCC cells.
- The JNK-Bcl-2 pathway is critical for mediating gartanin-induced protective autophagy.
- Targeting the JNK-Bcl-2 pathway may enhance gartanin's efficacy in combination cancer therapy.
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