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Mastoparan induces apoptosis in B16F10-Nex2 melanoma cells via the intrinsic mitochondrial pathway and displays antitumor activity in vivo
Affiliation:1. Department of Agricultural Biology, Seoul National University, Sillim 9-dong, Seoul, Republic of Korea;2. Ilsong Institute of Life Science, Hallym University, Anyang, Gyeonggido, Republic of Korea;3. Department of Biomedical Gerentology, Hallym University, Chuncheon, Gangwondo, Republic of Korea;4. Korea Basic Science Institute, Sungbuk-gu, Seoul, Republic of Korea;5. Department of Obstetrics and Gynecology, Hallym University Sacred Heart Hospital, Anyang, Gyeonggido, Republic of Korea;6. National Institute of Biological Resources, Environmental Research Complex, Gyoungseo-dong, Seo-gu, Incheon, Republic of Korea;7. Research Institute for Agriculture and Life Science, Seoul National University, Sillim 9-dong, Seoul, Republic of Korea;1. Department of Bioresources Science, Graduate School of Agricultural Sciences, Tottori University, Tottori 680-8553, Japan;2. Division of Functional Genomics, Research Center for Bioscience and Technology, Tottori University, Yonago 683-8503, Japan;3. Faculty of Exploratory Technology, Asubio Pharma Co., Ltd., Kobe 650-0047, Japan
Abstract:Mastoparan is an α-helical and amphipathic tetradecapeptide obtained from the venom of the wasp Vespula lewisii. This peptide exhibits a wide variety of biological effects, including antimicrobial activity, increased histamine release from mast cells, induction of a potent mitochondrial permeability transition and tumor cell cytotoxicity. Here, the effects of mastoparan in malignant melanoma were studied using the murine model of B16F10-Nex2 cells. In vitro, mastoparan caused melanoma cell death by the mitochondrial apoptosis pathway, as evidenced by the Annexin V-FITC/PI assay, loss of mitochondrial membrane potential (ΔΨm), generation of reactive oxygen species, DNA degradation and cell death signaling. Most importantly, mastoparan reduced the growth of subcutaneous melanoma in syngeneic mice and increased their survival. The present results show that mastoparan induced caspase-dependent apoptosis in melanoma cells through the intrinsic mitochondrial pathway protecting the mice against tumor development.
Keywords:Mastoparan  Apoptosis  Intrinsic pathway  Melanoma
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