Travert Nathalie, Al-Mourabit Ali
Institut de Chimie des Substances Naturelles du CNRS, BP 1, 91198 Gif-sur-Yvette, France.
J Am Chem Soc. 2004 Aug 25;126(33):10252-3. doi: 10.1021/ja047574e.
A new spontaneous oxidative transformation of the associated pyrrole-proline-guanidine to the natural marine pyrrole 2-aminoimidazolinone derivative has been achieved. The sensitive reaction requires air oxygen and the N-acylation of proline by pyrrole-2-carboxylic acid. Proline metabolism and pyrrole 2-aminoimidazole secondary metabolites formation seem to be related and are utilized by sponges under stress conditions for their defense against predators. A plausible stress-induced oxidative chemical pathway that establishes dispacamide derivatives as the forerunners in the biogenetic synthesis of the key pyrrole 2-aminoimidazole oroidin is proposed. The mechanism of the reaction seems to be another development of the known luciferins' chemiluminescent reactions in bioluminescent marine organisms.
已实现相关吡咯 - 脯氨酸 - 胍向天然海洋吡咯2 - 氨基咪唑啉酮衍生物的新型自发氧化转化。该敏感反应需要空气中的氧气以及吡咯 - 2 - 羧酸对脯氨酸的N - 酰化作用。脯氨酸代谢与吡咯2 - 氨基咪唑次生代谢产物的形成似乎相关,并且在应激条件下被海绵用于抵御捕食者。提出了一种合理的应激诱导氧化化学途径,该途径将双胍酰胺衍生物确立为关键吡咯2 - 氨基咪唑类海鞘素生物合成中的前体。该反应机制似乎是生物发光海洋生物中已知荧光素化学发光反应的又一发展。