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Asymmetric Total Synthesis of Heronamides A-C: Stereochemical Confirmation and Impact of Long-Range Stereochemical Communication on the Biological Activity

机译:Heronamides A-C的不对称全合成:立体化学证实和远距离立体化学通讯对生物活性的影响

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摘要

Heronamides are biosynthetically related metabolites isolated from marine-derived actinomycetes. Heronamide C shows potent antifungal activity by targeting membrane phospholipids possessing saturated hydrocarbon chains with as-yet-unrevealed modes of action. In spite of their curious hypothesized biosynthesis and fascinating biological activities, there have been conflicts in regard to the reported stereochemistries of heronamides. Here, we describe the asymmetric total synthesis of the originally proposed and revised structures of heronamide C, which unambiguously confirmed the chemical structure of this molecule. We also demonstrated nonenzymatic synthesis of heronamides A and B from heronamide C, which not only proved the postulated biosynthesis, but also confirmed the correct structures of heronamidesA and B. Investigation of the structure-activity relationship of synthetic and natural heronamides revealed the importance of both long-range stereochemical communication and the 20-membered macrolactam ring for the biological activity of these compounds.
机译:鹭酰胺是从海洋衍生的放线菌中分离出来的与生物合成相关的代谢产物。 Heronamide C通过靶向具有饱和烃链的膜磷脂并具有迄今尚未揭示的作用方式,显示出强大的抗真菌活性。尽管它们具有奇怪的假设生物合成和令人着迷的生物活性,但是据报道,其烯醇酰胺的立体化学存在矛盾。在这里,我们描述了Heronamide C的最初提出和修改的结构的不对称全合成,明确证实了该分子的化学结构。我们还证明了从Heronamide C进行非酶促合成Heronamides A和B的过程,这不仅证明了假定的生物合成,而且证实了Heronamides A和B的正确结构。对合成和天然Heronamides的构效关系的研究揭示了两者的重要性远程立体化学通讯和20元大环内酰胺环对这些化合物的生物活性。

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