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(+)-反式-二氢纳曲酮的立体控制全合成。

Stereocontrolled total synthesis of (+)-trans-dihydronarciclasine.

机构信息

College of Pharmacy, Seoul National University, San 56-1, Shilim, Kwanak, Seoul 151-742, Korea.

出版信息

Chemistry. 2012 Aug 6;18(32):9977-82. doi: 10.1002/chem.201201649. Epub 2012 Jul 10.

Abstract

A highly stereoselective and efficient total synthesis of trans-dihydronarciclasine from a readily available chiral starting material was developed. The synthesis defines two of the five stereogenic centers of the natural product by an amino acid ester-enolate Claisen rearrangement. The other three stereogenic centers are created in a highly stereocontrolled fashion via a six-ring vinylogous ester intermediate, which is generated from the γ,δ-unsaturated ester functional group of the Claisen rearrangement product in an efficient three-step sequence. This concise total synthesis exemplifies the use of a highly regioselective Friedel-Crafts-type cyclization to form the B ring via an isocyanate intermediate derived from an N-Boc group, which is superior to the conventional method using an imino triflate intermediate. This same N-Boc group is employed to give high selectivity in the Claisen rearrangement earlier in the sequence.

摘要

从易得的手性起始原料出发,高对映选择性、高效地完成了 trans-二氢纳曲酮的全合成。该合成通过氨基酸酯-烯醇酯 Claisen 重排定义了天然产物的五个立体中心中的两个。其他三个立体中心通过六元环 vinylogous 酯中间体以高度立体控制的方式构建,该中间体通过 Claisen 重排产物的γ,δ-不饱和酯官能团在高效的三步序列中生成。这个简洁的全合成例证了使用高度区域选择性的 Friedel-Crafts 型环化反应,通过异氰酸酯中间体形成 B 环,该中间体来自 N-Boc 基团,优于使用亚氨酸三氟甲磺酸酯中间体的传统方法。该相同的 N-Boc 基团在手性起始原料的 Claisen 重排步骤中也被用于获得高选择性。

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