Suppressing ROS-TFE3-dependent autophagy enhances ivermectin-induced apoptosis in human melanoma cells
Faming Deng1, Qian Xu1, Juan Long1
1Department of Dermatology, XiangYa Hospital, Central South University, Changsha, China.
Abstract:
Melanoma is an aggressive skin malignancy with a high mortality rate; however, successful treatment remains a clinical challenge. Ivermectin, a broad-spectrum antiparasitic drug, has recently been characterized as a potential anticancer agent due to its observed antitumor effects. However, the molecular mechanisms of ivermectin remain poorly understood. In the current study, we tested the involvement of autophagy in the ivermectin mechanism of action in human melanoma cells. We exposed SK-MEL-28 cells to different concentrations of ivermectin (2.5, 5, and 10 μM) for 24 hours. Here, ivermectin-induced apoptosis, as evidenced by the upregulation of cleaved poly (ADP-ribose) polymerase, BAX expression, and caspase-3 activity and downregulation of BCL-2 expression. In line with the apoptosis response, ivermectin triggered autophagy. Pharmacological or genetic inhibition of autophagy further sensitized SK-MEL-28 cells to ivermectin-induced apoptosis. Mechanistically, ivermectin-induced TFE3(Ser321) dephosphorylation, activated TFE3 nuclear translocation and increased TFE3 reporter activity, which contributed to lysosomal biogenesis and the expression of autophagy-related genes, and subsequently, initiated autophagy in SK-MEL-28 cells. Moreover, N-acetyl-cysteine, an reactive oxygen species (ROS) scavenger, abrogated the effects of ivermectin on TFE3-dependent autophagy. Taken together, we demonstrated that ivermectin increases TFE3-dependent autophagy through ROS signaling pathways in human melanoma cells and that inhibiting autophagy enhances ivermectin-induced apoptosis in human melanoma cells.
Insights
Ivermectin triggers autophagy in melanoma cells via ROS signaling, enhancing apoptosis. Inhibiting autophagy boosts ivermectin
Area of Science:
- Oncology
- Cell Biology
- Pharmacology
Background:
- Melanoma is an aggressive skin cancer with poor treatment outcomes.
- Ivermectin shows potential anticancer effects, but its mechanisms are unclear.
- Autophagy's role in ivermectin's action on melanoma needs investigation.
Purpose of the Study:
- To investigate the role of autophagy in ivermectin's mechanism of action in human melanoma cells.
- To elucidate the molecular pathways involved in ivermectin-induced autophagy and apoptosis.
Main Methods:
- Human melanoma cells (SK-MEL-28) were treated with ivermectin.
- Apoptosis markers (PARP, BAX, caspase-3, BCL-2) and autophagy were assessed.
- TFE3 activity, nuclear translocation, and reactive oxygen species (ROS) were analyzed.
Main Results:
- Ivermectin induced apoptosis and autophagy in melanoma cells.
- Inhibiting autophagy sensitized cells to ivermectin-induced apoptosis.
- Ivermectin activated TFE3-dependent autophagy via ROS signaling.
Conclusions:
- Ivermectin promotes TFE3-dependent autophagy through ROS pathways in melanoma.
- Blocking autophagy enhances ivermectin's apoptotic effect on melanoma cells.
- Ivermectin represents a potential therapeutic agent for melanoma, with autophagy modulation as a key mechanism.
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