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Inhibiting NF-κB-S100A11 signaling and targeting S100A11 for anticancer effects of demethylzeylasteral in human colon
Wenqing Li1, Fubo Han2, Kaifan Tang3
1Oujiang Laboratory, School of Pharmaceutical Science, Wenzhou Medical University, Wenzhou 325035, PR China; College of Pharmacy, Chonnam National University, Gwangju 61186, the Republic of Korea.
Abstract:
Colon cancer is a common and deadly malignancy of the gastrointestinal tract. Targeting proteins that inhibit tumor proliferation could lead to innovative treatment strategies for this disease. Demethylzeylasteral, extracted naturally from Tripterygium wilfordii Hook. f., demonstrates incredible anti-colon cancer activity. However, the molecular mechanism behind this requires further investigation. This study aims to identify crucial targets and mechanisms of demethylzeylasteral in treating colon cancer, making it a promising candidate for anti-tumor therapy. Through gene knockout, overexpression techniques, and double Luciferase experiments, we confirmed that demethylzeylasteral reduces S100A11 expression in HT29 cells and in vivo tumor models to anti-colon cancer. By conducting Surface Plasmon Resonance, immunofluorescence staining, and confocal laser microscopy observations, we verified the direct interaction between demethylzeylasteral and S100A11, and explored the impact of S100A11's subcellular localization on cell proliferation. Demethylzeylasteral inhibited S100A11 expression and exhibited anti-cancer activity in both in vitro and in vivo colon cancer models. Conversely, overexpression of S100A11 hindered apoptosis induced by demethylzeylasteral. Additionally, we found that knockdown or overexpression of NF-κB respectively decreased or increased S100A11 expression, subsequently affecting cell proliferation. The dual Luciferase reporting experiment revealed that NF-κB is an upstream transcription factor regulating S100A11 expression. And Surface plasmon resonance confirmed that S100A11 can directly interact with demethylzeylasteral, this interaction limited the transport of S100A11 from the cytoplasm to nucleus, attenuation S100A11 mediated cell proliferation effect.
Insights
Demethylzeylasteral, a natural compound, combats colon cancer by reducing S100A11 expression. This compound directly interacts with S100A11, inhibiting its nuclear transport and suppressing tumor cell proliferation.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Colon cancer remains a significant global health challenge.
- Targeting tumor proliferation pathways offers potential therapeutic strategies.
- Demethylzeylasteral from Tripterygium wilfordii shows promise against colon cancer, but its mechanism is unclear.
Purpose of the Study:
- To elucidate the molecular targets and mechanisms of demethylzeylasteral in colon cancer treatment.
- To validate demethylzeylasteral as a potential anti-tumor therapeutic agent.
Main Methods:
- Gene knockout and overexpression techniques were employed.
- Double Luciferase assays were used to investigate transcriptional regulation.
- Surface Plasmon Resonance, immunofluorescence, and confocal microscopy assessed molecular interactions and localization.
Main Results:
- Demethylzeylasteral significantly reduced S100A11 expression in vitro and in vivo.
- Direct interaction between demethylzeylasteral and S100A11 was confirmed, inhibiting S100A11 nuclear translocation.
- NF-κB was identified as an upstream regulator of S100A11, influencing cell proliferation.
Conclusions:
- Demethylzeylasteral exerts anti-colon cancer effects by downregulating S100A11 expression and inhibiting its pro-proliferative function.
- The interaction between demethylzeylasteral and S100A11 is crucial for its therapeutic efficacy.
- NF-κB signaling pathway modulation plays a role in demethylzeylasteral's anti-cancer activity.
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