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INCORPORATION OF MOLECULAR OXYGEN IN AFLATOXIN B-1 BIOSYNTHESIS

机译:黄曲霉毒素B-1生物合成中包含的分子氧

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The final steps in the biosynthesis of the potent environmental carcinogen aflatoxin B-1 (7) involve the oxidative cleavage of the xanthone O-methylsterigmatocystin (6, R = Me) and rearrangement to the substituted coumarin skeleton of the mycotoxin itself. This process has been determined to require loss of a xanthone nuclear carbon at the oxidation state of carbon dioxide and argues for the intervention of at least two oxidative reactions in this poorly understood transformation. The incorporation of O-18-labeled molecular oxygen in the biosynthesis of aflatoxin B-1 is reported and allows a minimal mechanism to be proposed where a monooxygenase activation of the xanthone is followed by a dioxygenase-mediated aryl cleavage to initiate the final rearrangement and decarboxylation to aflatoxin B-1. Similarly, two other sites of heavy oxygen incorporation are consistent with proposed Baeyer-Villiger-like reactions taking place earlier in the pathway. [References: 28]
机译:有效的环境致癌物黄曲霉毒素B-1(7)的生物合成的最后步骤涉及黄酮O-甲基甾体藻毒素(6,R = Me)的氧化裂解和重排至霉菌毒素本身的取代香豆素骨架上。已经确定该方法要求在二氧化碳的氧化态下损失黄酮核碳,并主张在这个鲜为人知的转化中干预至少两个氧化反应。据报道,O-18标记的分子氧在黄曲霉毒素B-1的生物合成中的结合,并提出了一种最小的机制,即黄酮的单加氧酶激活之后是双加氧酶介导的芳基裂解,从而引发了最终的重排和脱羧为黄曲霉毒素B-1。同样,另外两个重氧结合位点与该途径中较早发生的拟议的Baeyer-Villiger类反应一致。 [参考:28]

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