Effects of the methoxy group in the side chain of debromoaplysiatoxin on its tumor-promoting and anti-proliferative activities |
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Authors: | Ryo C. Yanagita Hiroaki Kamachi Masayuki Kikumori Harukuni Tokuda Nobutaka Suzuki Kiyotake Suenaga Hiroshi Nagai Kazuhiro Irie |
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Affiliation: | 1. Division of Food Science and Biotechnology, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan;2. Department of Applied Biological Science, Faculty of Agriculture, Kagawa University, Kagawa 761-0795, Japan;3. Department of Complementary and Alternative Medicine, Clinical R&D, Graduate School of Medical Science, Kanazawa University, Kanazawa 920-8640, Japan;4. Faculty of Science and Technology, Keio University, Yokohama 223-8522, Japan;5. Department of Ocean Sciences, Tokyo University of Marine Science and Technology, Tokyo 108-8477, Japan |
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Abstract: | Debromoaplysiatoxin (DAT) is a tumor promoter isolated from sea hare and exhibits anti-proliferative activity against several cancer cell lines. To clarify key residues that are responsible for its tumor-promoting activity, we focused on the chiral methoxy group in the side chain, whose role had not yet been discussed or examined before. Demethoxy-DAT (8) was derived from DAT and we evaluated its tumor-promoting activity, anti-proliferative activity, and ability to bind to protein kinase C (PKC) isozymes. Compound 8 showed somewhat weaker tumor-promoting activity than that of DAT both in vitro and in vivo, but showed higher anti-proliferative activity against several cancer cell lines. Although the affinity to novel PKC isozymes of 8 was comparable to that of DAT, the affinity to conventional PKC isozymes decreased slightly. These results suggest that the methoxy group of DAT is one of the key residues critical for tumor-promoting activity but not for anti-proliferative activity. Since the methoxy group has little influence on the molecular hydrophobicity, this is the first report showing that structural factors other than hydrophobicity in the side chain of DAT affected its biological activities. |
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Keywords: | Aplysiatoxin Debromoaplysiatoxin Protein kinase C Tumor promotion Cancer Anti-proliferative activity |
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