RRC ID 77883
著者 Suzuki Y, Inoue T, Murai M, Suzuki-Karasaki M, Ochiai T, Ra C.
タイトル Depolarization potentiates TRAIL-induced apoptosis in human melanoma cells: role for ATP-sensitive K+ channels and endoplasmic reticulum stress.
ジャーナル Int J Oncol
Abstract Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) is promising for cancer treatment owing to its selective cytotoxicity against malignant cells. However, some cancer cell types, including malignant melanoma cells, are resistant to TRAIL-induced apoptosis. Therefore, drugs that can amplify TRAIL cytotoxicity are urgently required. Depolarization of the plasma membrane potential is associated with apoptosis induced by a variety of death-inducing agents but its role in apoptosis remains a matter of debate. We found that TRAIL treatment resulted in robust depolarization in human melanoma cells with a considerable lag (2-4 h). Moreover, membrane-depolarizing agents, including K+ and ATP-sensitive K+ (KATP) channel inhibitors glibenclamide and U37883A enhanced TRAIL-induced apoptosis. On the contrary, inhibitors of calcium- and voltage-dependent K+ channels and mitochondrial KATP channels had no such effects. Melanocytes were insensitive to TRAIL-induced depolarization and apoptosis as well as to the sensitization by membrane-depolarizing agents despite their substantial surface expression of death receptors. TRAIL induced robust activation of X-box-binding protein-1 and caspase-12, both of which were enhanced by the K+ and KATP channel inhibitors, but not by other K+ channel inhibitors. Finally, caspase-12-selective inhibitor completely abolished the amplification of apoptosis. These findings suggest that depolarization promotes endoplasmic reticulum stress-mediated death pathway, thereby amplifying TRAIL cytotoxicity. Thus, membrane-depolarizing agents such as KATP channel inhibitors may have therapeutic potential in the treatment of TRAIL-resistant cancer cells without impairing tumor-selectivity.
巻・号 41(2)
ページ 465-75
公開日 2012-8-1
DOI 10.3892/ijo.2012.1483
PMID 22613960
PMC PMC3582902
MeSH Adamantane / analogs & derivatives Adamantane / pharmacology Antineoplastic Agents / pharmacology* Apoptosis / drug effects* Caspase 12 / metabolism Caspase 3 / metabolism Caspase 7 / metabolism Endoplasmic Reticulum Stress* Enzyme Activation Glyburide / pharmacology Humans KATP Channels / antagonists & inhibitors KATP Channels / metabolism* Melanocytes / drug effects Melanoma Membrane Potential, Mitochondrial / drug effects Membrane Potentials / drug effects Morpholines / pharmacology Potassium / metabolism Potassium / physiology Potassium Channel Blockers / pharmacology TNF-Related Apoptosis-Inducing Ligand / pharmacology* Tumor Cells, Cultured
IF 3.899
リソース情報
ヒト・動物細胞 SK-MEL-28(RCB1930)