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Rapid and efficient synthesis of dysiherbaine and analogues to explore structure - Activity relationships

机译:快速有效地合成dysiherbaine及其类似物以探索结构-活性关系

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[GRAPHICS] A rapid and efficient total synthesis of dysiherbaine (1), a potent and subtype-selective agonist for ionotropic glutamate receptors, has been accomplished. A key intermediate 15 was synthesized by two approaches. The first synthetic route utilized compound 9, an advanced intermediate in our previous total synthesis of neodysiherbaine A, as the starting point, and the cis-oriented amino alcohol functionality on the tetrahydropyran ring was installed by using an intramolecular S(N)2 cyclization of N-Boc-protected amino alcohol 20. An alternative and even more efficient synthetic approach to 15 featured stereoselective introduction of an amino group at C8 by iodoaminocyclization prior to constructing the bicyclic ether skeleton. The amino acid appendage was efficiently constructed by a catalytic asymmetric hydrogenation of enamide ester 36. The synthetic route developed here provided access to several dysiherbaine analogues, including 9-epi-dysiherbaine (38), 9-deoxydysiherbaine (39), 9-methoxydysiherbaine (40), and N-ethyldysiherbaine (41). The preliminary structure-activity relationship studies revealed that the presence and stereochemistry of the C9 hydroxy group in dysiherbaine is important for high-affinity and selective binding to glutamate subtype receptors.
机译:[图]已经完成了对离子型谷氨酸受体的有效和亚型选择性激动剂dysiherbaine(1)的快速有效合成。通过两种方法合成了关键中间体15。第一条合成路线是利用化合物9(我们之前的新dydysiherbaine A的总合成过程中的高级中间体)作为起点,并通过使用分子内的S(N)2环化方法在四氢吡喃环上安装了顺式的氨基醇官能团。 N-Boc保护的氨基醇20.另一种甚至更有效的15合成方法是,在构建双环醚骨架之前,通过碘氨基环化在C8立体选择性地引入氨基。氨基酸附肢是通过烯酰胺酯36的催化不对称加氢而有效构建的。此处开发的合成路线提供了使用几种dysiherbaine类似物的途径,包括9-epi-dysiherbaine(38),9-deoxydysiherbaine(39),9-甲氧基dysiherbaine( 40)和N-乙基dysiherbaine(41)。初步的结构-活性关系研究表明,dysiherbaine中C9羟基的存在和立体化学对于高亲和力和与谷氨酸亚型受体的选择性结合非常重要。

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