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Lecanoric acid mediates anti-proliferative effects by an M phase arrest in colon cancer cells
Luise A Roser1, Pelin Erkoc2, Rebecca Ingelfinger2
1Fraunhofer Institute for Translational Medicine and Pharmacology ITMP, Theodor-Stern-Kai 7, 60596 Frankfurt, Germany; LOEWE Center for Translational Biodiversity Genomics (LOEWE-TBG), Frankfurt, Germany.
Abstract:
Lichen extracts containing, among other compounds, depsides such as evernic acid, atranorin, and lecanoric acid possess anti-proliferative effects. We aimed to identify lichen metabolites that are responsible for the observed anti-proliferative effects. We performed cytotoxicity, cell colony, cell cycle and apoptosis assays in various cell lines or primary immune cells. We analyzed several cell cycle proteins and apoptosis-related proteins to gain insights into the underlying mechanism. All depsides reduced the viability of the tested cell lines (HCT-116, HEK293T, HeLa, NIH3T3, RAW246.7) in a cell line-dependent manner with lecanoric acid being the most effective. Atranorin did not influence the cell cycle or colony formation in HCT-116 cells, but induced apoptosis in HCT-116 cells. Evernic acid showed no anti-proliferative effects. Lecanoric acid inhibited cell colony formation already at 0.03 µg/ml in HCT-116 cells and induced a G2 cell cycle block in several cell lines. Moreover, lecanoric acid arrested the cell cycle, presumably in the M phase, since expression of cyclin B1 and phosphorylated histone H3 was upregulated, whereas the inactive cyclin-dependent kinase 1 (CDK1) was reduced in HCT-116 cells. Most importantly, cell death induced by lecanoric acid was more prominent in cancer cells than in primary human immune and endothelial cells. In conclusion, lecanoric acid seems to mediate its anti-proliferative effects via arrest of cells in the M phase. Our data suggest lecanoric acid may be a potential new candidate for anti-cancer therapy, because it has anti-proliferative effects on cancer cell lines, and does not affect primary immune cells.
Insights
Lichen compound lecanoric acid shows potent anti-proliferative effects, inhibiting cancer cell growth and colony formation. It induces M phase cell cycle arrest, offering potential as a novel anti-cancer therapeutic agent.
Area of Science:
- Natural Product Chemistry
- Cell Biology
- Pharmacology
Background:
- Lichen extracts contain depsides with known anti-proliferative properties.
- Identifying specific lichen metabolites responsible for these effects is crucial for therapeutic development.
Purpose of the Study:
- To identify lichen metabolites with anti-proliferative activity.
- To elucidate the mechanism of action of these compounds.
- To evaluate their potential as anti-cancer agents.
Main Methods:
- Cytotoxicity, cell colony, cell cycle, and apoptosis assays were performed on various cell lines and primary cells.
- Analysis of cell cycle and apoptosis-related proteins was conducted.
- Lichen depsides including evernic acid, atranorin, and lecanoric acid were tested.
Main Results:
- Lecanoric acid demonstrated the most significant anti-proliferative effects, inhibiting viability and colony formation in cancer cell lines.
- Lecanoric acid induced an M phase cell cycle arrest, evidenced by altered expression of cyclin B1, phosphorylated histone H3, and CDK1.
- Cell death induced by lecanoric acid was more pronounced in cancer cells than in primary immune and endothelial cells.
Conclusions:
- Lecanoric acid mediates anti-proliferative effects through M phase cell cycle arrest.
- Lecanoric acid exhibits selective toxicity towards cancer cells, sparing primary immune cells.
- Lecanoric acid represents a promising candidate for anti-cancer therapy development.
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