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ASYMMETRIC TOTAL SYNTHESES OF (-)- AND (+)-STRYCHNINE AND THE WIELAND-GUMLICH ALDEHYDE

机译:(-)-和(+)-士的宁与Wieland-GUMLICH醛的不对称全合成

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The first asymmetric total syntheses of (-)-strychnine, ent-strychnine, and the Wieland-Gumlich aldehyde are described with full experimental details. The total synthesis of (-)-strychnine was realized in 24 steps and 3% overall yield from (1R,4S)-(+)-4-hydroxy-2-cyclopentenyl acetate (28). This synthesis fully controls the six stereogenic centers and forms the C(20) double bond of (-)-strychnine with high diastereoselection (>20:1). In the first stage of the synthesis, the (R)-cyclopentenylstannane 8 is prepared in nine steps and 30% overall yield (40% with one recycle of 38) as summarized in Scheme 4. Palladium-catalyzed carbonylative coupling of 8 with the 2-iodoaniline derivative 7 provides enone 6, which is converted to the 2-azabicyclo[3.2.1]octane 5 in seven additional steps. This latter sequence proceeds in 36% overall yield (Scheme 6). The central step of the total synthesis is aza-Cope-Mannich rearrangement of 5 which proceeds in 98% yield to form the pentacyclic intermediate 4 (Scheme 7). In five additional steps 4 is converted to the Wieland-Gumlich aldehyde 2, which is the ultimate precursor of (-)strychnine. A slight modification of this synthesis strategy allowed ent-strychnine to be prepared and provided the first samples of this unnatural enantiomer for pharmacological studies (Scheme 8). The efficiency and conciseness of this synthesis provide an important benchmark of the power of the aza-Cope rearrangement-Mannich reaction to solve formidable problems in alkaloid construction. [References: 97]
机译:描述了(-)-斯氏鸟氨酸,对-斯氏鸟氨酸和Wieland-Gumlich醛的第一个不对称全合成,并有完整的实验细节。 (-)-士的宁的总合成可通过24个步骤实现,并且从(1R,4S)-(+)-4-羟基-2-环戊烯基乙酸酯(28)可获得3%的总收率。此合成完全控制六个立体生成中心,并形成具有高非对映选择性(> 20:1)的(-)-士高宁的C(20)双键。在合成的第一阶段,如方案4所述,分九步制备(R)-环戊烯基锡烷8,总产率为30%(40%,一次循环38个)。钯催化8与2的羰基化偶联。 -碘苯胺衍生物7提供烯酮6,其在另外七个步骤中被转化为2-氮杂双环[3.2.1]辛烷5。后一序列以36%的总产率进行(方案6)。全部合成的中心步骤是aza-Cope-Mannich重排5,以98%的收率进行反应以形成五环中间体4(方案7)。在另外五个步骤中,将4转化为Wieland-Gumlich醛2,它是(-)士多宁的最终前体。对这种合成策略的稍作修改,就可以制备恩斯可宁,并为药理研究提供了该非天然对映体的首批样品(方案8)。该合成的效率和简洁性提供了aza-Cope重排-Mannich反应解决生物碱构建中巨大问题的能力的重要基准。 [参考:97]

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