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Published on: February 28, 2020
Honokiol inhibits melanoma stem cells by targeting notch signaling
Gaurav Kaushik1, Anand Venugopal2, Prabhu Ramamoorthy2,3
1Departments of Surgery, The University of Kansas Medical Center, Kansas City, Kansas.
Abstract:
Melanoma is an aggressive disease with limited therapeutic options. Here, we determined the effects of honokiol (HNK), a biphenolic natural compound on melanoma cells and stemness. HNK significantly inhibited melanoma cell proliferation, viability, clonogenicity and induced autophagy. In addition, HNK significantly inhibited melanosphere formation in a dose dependent manner. Western blot analyses also demonstrated reduction in stem cell markers CD271, CD166, Jarid1b, and ABCB5. We next examined the effect of HNK on Notch signaling, a pathway involved in stem cell self-renewal. Four different Notch receptors exist in cells, which when cleaved by a series of enzymatic reactions catalyzed by Tumor Necrosis Factor-α-Converting Enzyme (TACE) and γ-secretase protein complex, results in the release of the Notch intracellular domain (NICD), which then translocates to the nucleus and induces target gene expression. Western blot analyses demonstrated that in HNK treated cells there is a significant reduction in the expression of cleaved Notch-2. In addition, there was a reduction in the expression of downstream target proteins, Hes-1 and cyclin D1. Moreover, HNK treatment suppressed the expression of TACE and γ-secretase complex proteins in melanoma cells. To confirm that suppression of Notch-2 activation is critical for HNK activity, we overexpressed NICD1, NICD2, and performed HNK treatment. NICD2, but not NICD1, partially restored the expression of Hes-1 and cyclin D1, and increased melanosphere formation. Taken together, these data suggest that HNK is a potent inhibitor of melanoma cells, in part, through the targeting of melanoma stem cells by suppressing Notch-2 signaling.
Insights
Honokiol (HNK) effectively inhibits melanoma cell growth and stemness by suppressing Notch-2 signaling. This natural compound targets melanoma stem cells, offering a potential new therapeutic avenue for this aggressive cancer.
Area of Science:
- Oncology
- Natural Product Chemistry
- Molecular Biology
Background:
- Melanoma is an aggressive skin cancer with limited treatment options.
- Melanoma stem cells contribute to tumor growth and therapeutic resistance.
- Honokiol (HNK) is a natural compound with potential anti-cancer properties.
Purpose of the Study:
- To investigate the effects of honokiol (HNK) on melanoma cells and melanoma stemness.
- To elucidate the molecular mechanisms underlying HNK's anti-melanoma activity, particularly its impact on Notch signaling.
Main Methods:
- Melanoma cell proliferation, viability, and clonogenicity assays.
- Melanosphere formation assays to assess stemness.
- Western blot analysis to evaluate stem cell markers and Notch signaling pathway components (Notch-2, TACE, γ-secretase, Hes-1, cyclin D1).
- Overexpression of Notch intracellular domains (NICD1, NICD2) to validate pathway involvement.
Main Results:
- HNK significantly inhibited melanoma cell proliferation, viability, clonogenicity, and melanosphere formation.
- HNK reduced the expression of key melanoma stem cell markers.
- HNK suppressed Notch-2 signaling by decreasing cleaved Notch-2, TACE, and γ-secretase expression.
- Overexpression of NICD2, but not NICD1, partially restored Hes-1 and cyclin D1 expression and melanosphere formation in HNK-treated cells.
Conclusions:
- Honokiol is a potent inhibitor of melanoma cell proliferation and stemness.
- HNK exerts its effects, in part, by suppressing Notch-2 signaling in melanoma stem cells.
- HNK represents a promising therapeutic agent for melanoma, targeting both cancer cells and their stem cell population.
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