Satake Yoshiki, Adachi Masaatsu, Tokoro Shouta, Yotsu-Yamashita Mari, Isobe Minoru, Nishikawa Toshio
Laboratory of Organic Chemistry, Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya 464-8601 (Japan), Fax: (+81) 52-789-4111.
Chem Asian J. 2014 Jul;9(7):1922-32. doi: 10.1002/asia.201402202. Epub 2014 May 26.
Tetrodotoxin, a toxic principle of puffer fish intoxication, is one of the most famous marine natural products owing to its complex structure and potent biological activity, which leads to fatal poisoning. Continuous synthetic studies on tetrodotoxin and its analogues to elucidate biologically interesting issues associated with tetrodotoxin have led to the development of versatile routes for a variety of tetrodotoxin derivatives. With the aim of investigating the structure-activity relationship of tetrodotoxin with voltage-gated sodium channels, this study describes the first total syntheses of 5-deoxytetrodotoxin, a natural analogue of tetrodotoxin, and 8-deoxytetrodotoxin, an unnatural analogue, from a newly designed, versatile intermediate in an efficient manner. An estimation of the biological activities of these compounds reveals the importance of the hydroxy groups at the C-5 and C-8 positions on the inhibition of voltage-gated sodium channels.
河豚毒素是河豚中毒的毒性成分,因其结构复杂且具有强大的生物活性(可导致致命中毒)而成为最著名的海洋天然产物之一。对河豚毒素及其类似物进行持续的合成研究,以阐明与河豚毒素相关的生物学有趣问题,这导致了多种河豚毒素衍生物通用合成路线的开发。为了研究河豚毒素与电压门控钠通道的构效关系,本研究描述了从新设计的通用中间体高效首次全合成河豚毒素的天然类似物5-脱氧河豚毒素和非天然类似物8-脱氧河豚毒素。对这些化合物生物活性的评估揭示了C-5和C-8位羟基对抑制电压门控钠通道的重要性。