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新刺参碱A及其类似物的全合成与生物学评价

Total synthesis and biological evaluation of neodysiherbaine A and analogues.

作者信息

Shoji Muneo, Akiyama Nobuyuki, Tsubone Koichi, Lash L Leanne, Sanders James M, Swanson Geoffrey T, Sakai Ryuichi, Shimamoto Keiko, Oikawa Masato, Sasaki Makoto

机构信息

Laboratory of Biostructural Chemistry, Graduate School of Life Sciences, Tohoku University, Sendai 981-8555, Japan.

出版信息

J Org Chem. 2006 Jul 7;71(14):5208-20. doi: 10.1021/jo0605593.

Abstract

Dysiherbaine (1) and its congener neodysiherbaine A (2) are naturally occurring excitatory amino acids with selective and potent agonistic activity for ionotropic glutamate receptors. We describe herein the total synthesis of 2 and its structural analogues 3-8. Advanced key intermediate 16 was employed as a branching point to assemble a series of these analogues 3-8 with respect to the C8 and C9 functionalities, which would not have been accessible through manipulations of the natural product itself. The synthesis of key intermediate 16 features (i) stereocontrolled C-glycosylation to set the C6 stereocenter, (ii) concise synthesis of the bicyclic ether skeleton through chemo- and stereoselective dihydroxylation of the exo-olefin and stereoselective epoxidation of the endo-olefin, followed by epoxide ring opening/5-exo ring closure, and (iii) catalytic asymmetric hydrogenation of enamide ester to construct the amino acid appendage. A preliminary biological evaluation of analogues for their in vivo toxicity against mice and binding affinity for glutamate receptors showed that both the type and stereochemistry of the C8 and C9 functional groups affected the subtype selectivity of dysiherbaine analogues for members of the kainic acid receptor family.

摘要

二异麦角碱(1)及其同系物新二异麦角碱A(2)是天然存在的兴奋性氨基酸,对离子型谷氨酸受体具有选择性和强效激动活性。我们在此描述了2及其结构类似物3 - 8的全合成。先进的关键中间体16被用作分支点,以组装一系列关于C8和C9官能团的这些类似物3 - 8,而通过对天然产物本身的操作是无法获得这些类似物的。关键中间体16的合成特点包括:(i)立体控制的C - 糖基化以设定C6立体中心;(ii)通过外烯烃的化学和立体选择性二羟基化以及内烯烃的立体选择性环氧化,随后进行环氧开环/5 - 外环化,简洁地合成双环醚骨架;(iii)烯酰胺酯的催化不对称氢化以构建氨基酸附属物。对类似物针对小鼠的体内毒性和对谷氨酸受体的结合亲和力的初步生物学评估表明,C8和C9官能团的类型和立体化学都影响了二异麦角碱类似物对红藻氨酸受体家族成员的亚型选择性。

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