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一叶萩生物碱(+)-14,15-二氢去甲一叶萩碱、(-)-去甲一叶萩碱和叶下珠碱的全合成。

Total syntheses of the Securinega alkaloids (+)-14,15-dihydronorsecurinine, (-)-norsecurinine, and phyllanthine.

作者信息

Han G, LaPorte M G, Folmer J J, Werner K M, Weinreb S M

机构信息

Department of Chemistry, The Pennsylvania State University, University Park 16802, USA.

出版信息

J Org Chem. 2000 Oct 6;65(20):6293-306. doi: 10.1021/jo000260z.

Abstract

A new strategy for enantiospecific construction of the Securinega alkaloids has been developed and applied in total syntheses of (+)-14,15-dihydronorsecurinine (8), (-)-norsecurinine (6), and phyllanthine (2). The B-ring and C7 absolute stereochemistry of these biologically active alkaloids originated from trans-4-hydroxy-L-proline (10), which was converted to ketonitrile 13 via a high-yielding eight-step sequence. Treatment of this ketonitrile with SmI2 afforded the 6-azabicyclo[3.2.1]octane B/C-ring system 14, which is a key advanced intermediate for all three synthetic targets. Annulation of the A-ring of (-)-norsecurinine (6) with the required C2 configuration via an N-acyliminium ion alkylation was accomplished using radical-based amide oxidation methodology developed in these laboratories as a key step, providing tricycle 33. Annulation of the D-ring onto alpha-hydroxyketone 33 with the Bestmann ylide 45 at 12 kbar gave (+)-14,15-dihydronorsecurinine (8). In the securinine series, the D-ring was incorporated using an intramolecular Wadsworth-Horner-Emmons olefination of phenylselenylated alpha-hydroxyketone 47. The C14,15 unsaturation was installed late in the synthesis by an oxidative elimination of the selenoxide derived from tetracyclic butenolide 50 to give (-)-norsecurinine (6). The A-ring of phyllanthine (2) was formed from hydroxyketone 14 using a stereoselective Yb(OTf)3-promoted hetero Diels-Alder reaction of the derived imine 34 with Danishefsky's diene, affording adduct 35. Conjugate reduction and stereoselective equatorial ketone reduction of vinylogous amide 35 provided tricyclic intermediate 36, which could then be elaborated in a few steps to stable hydroxyenone 53 via alpha-selenophenylenone intermediate 52. The D-ring was then constructed, again using an intramolecular Wadsworth-Horner-Emmons olefination reaction to give phyllanthine (2).

摘要

已开发出一种对映体特异性构建一叶萩生物碱的新策略,并将其应用于(+)-14,15-二氢去甲一叶萩碱(8)、(-)-去甲一叶萩碱(6)和叶下珠碱(2)的全合成中。这些生物活性生物碱的B环和C7绝对立体化学源自反式-4-羟基-L-脯氨酸(10),其通过高产率的八步序列转化为酮腈13。用二碘化钐处理该酮腈得到6-氮杂双环[3.2.1]辛烷B/C环体系14,它是所有三个合成目标的关键高级中间体。通过这些实验室开发的基于自由基的酰胺氧化方法作为关键步骤,利用所需的C2构型通过N-酰基亚胺离子烷基化将(-)-去甲一叶萩碱(6)的A环环合,得到三环化合物33。在12千巴下用贝斯德曼叶立德45将D环环合到α-羟基酮33上,得到(+)-14,15-二氢去甲一叶萩碱(8)。在一叶萩碱系列中,利用苯基硒化的α-羟基酮47的分子内沃兹沃思-霍纳-埃蒙斯烯化反应引入D环。通过氧化消除四环丁烯内酯50衍生的硒氧化物在合成后期引入C14,15不饱和键,得到(-)-去甲一叶萩碱(6)。叶下珠碱(2)的A环由羟基酮14通过衍生的亚胺34与达尼谢夫斯基双烯的立体选择性Yb(OTf)3促进的杂Diels-Alder反应形成,得到加合物35。对乙烯基酰胺35进行共轭还原和立体选择性的赤道酮还原得到三环中间体36,然后通过α-硒代苯甲酰基中间体52经几步反应将其转化为稳定的羟基烯酮53。然后再次利用分子内沃兹沃思-霍纳-埃蒙斯烯化反应构建D环,得到叶下珠碱(2)。

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