首页> 外文期刊>The Journal of Organic Chemistry >General Approach to the Total Synthesis of 9-Methoxy-Substituted Indole Alkaloids: Synthesis of Mitragynine, as well as 9-Methoxygeissoschizol and 9-Methoxy-N-b-methylgeissoschizol
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General Approach to the Total Synthesis of 9-Methoxy-Substituted Indole Alkaloids: Synthesis of Mitragynine, as well as 9-Methoxygeissoschizol and 9-Methoxy-N-b-methylgeissoschizol

机译:总合成9-甲氧基取代的吲哚生物碱的一般方法:蜜曲宁,9-甲氧基Geissoschizol和9-甲氧基-N-b-甲基Geissoschizol的合成

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摘要

Herein, the full details of the synthesis of the 9-methoxy-substituted Corynanthe indole alkaloids mitragynine (1), 9-methoxygeissoschizol (3), and 9-methoxy-N-b-methylgeissoschizol (4) are described. Initially, an efficient synthetic route to the optically active 4-methoxytryptophan ethyl ester 20 on a multigram scale was developed via a Mori-Ban-Hegedus indole synthesis. The ethyl ester Of D-4-methoxytryptophan 20 was obtained with a radical-mediated regioselective bromination of indoline 12 serving as a key step. Alternatively, the key 4-methoxytryptophan intermediate 22 could be synthesized by the Larock heteroannulation of aryl iodide 10b with the internal alkyne 21a. The use of the Bocprotected aniline 10b was crucial to the success of this heteroannulation. The alpha,beta-unsaturated ester 6 was synthesized via the Pictet-Spengler reaction as the pivotal step. This was followed by a Ni(COD)(2)-mediated cyclization to set up the stereocenter at C-15. The benzyloxy group in 31 was removed to provide the intermediate ester 5. This chiral tetracyclic ester 5 was employed to accomplish the first total synthesis of 9-methoxygeissoschizol (3) and 9-methoxy-N-b-methylgeissoschizol (4) as well as the opioid agonistic indole alkaloid mitragynine (1).
机译:在此,描述了9-甲氧基取代的Corynanthe吲哚生物碱米特拉宁(1),9-甲氧基Geissoschizol(3)和9-甲氧基-N-b-甲基Geissoschizol(4)的合成的全部细节。最初,通过Mori-Ban-Hegedus吲哚合成法开发了以克数计的光学活性的4-甲氧基色氨酸乙酯20的有效合成路线。用吲哚啉12的自由基介导的区域选择性溴化作为关键步骤,获得D-4-甲氧基色氨酸20的乙酯。或者,关键的4-甲氧基色氨酸中间体22可通过芳基碘化物10b与内部炔烃21a的Larock异环合成。 Bocprotected苯胺10b的使用对于这种异环化的成功至关重要。作为关键步骤,通过Pictet-Spengler反应合成了α,β-不饱和酯6。随后是Ni(COD)(2)介导的环化反应,以在C-15处建立立体中心。除去31中的苄氧基,得到中间体酯5。该手性四环酯5用于完成9-甲氧基Geissoschizol(3)和9-甲氧基-Nb-甲基Geissoschizol(4)以及阿片样物质的第一次全合成。激动的吲哚生物碱米特拉吉宁(1)。

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