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一种抗寄生虫伪氨基型单萜吲哚生物碱的合成及立体化学测定

Synthesis and stereochemical determination of an antiparasitic pseudo-aminal type monoterpene indole alkaloid.

作者信息

Noguchi Yoshihiko, Hirose Tomoyasu, Ishiyama Aki, Iwatsuki Masato, Otoguro Kazuhiko, Sunazuka Toshiaki, Ōmura Satoshi

机构信息

Kitasato Institute for Life Sciences, Kitasato University, 5-9-1 Shirokane, Minato-ku, Tokyo, 108-8641, Japan.

Graduate School of Infection Control Sciences, Kitasato University, 5-9-1 Shirokane, Minato-ku, Tokyo, 108-8641, Japan.

出版信息

J Nat Med. 2016 Jul;70(3):302-17. doi: 10.1007/s11418-016-1012-2. Epub 2016 Jun 21.

Abstract

5-Nor stemmadenine alkaloids, isolated from the genus Tabernaemontana, display a range of bioactivity. 16-Hydroxy-16,22-dihydroapparicine, the active component of an extract from the Tabernaemontana sp. (dichotoma, elegans, and divaricate), exhibited potent antimalarial activity, representing the first such report of the antimalarial property of 5-nor stemmadenine alkaloids. We, therefore, decided to attempt the total synthesis of the compound to explore its antimalarial activity and investigate structure and bioactivity relationships. As a result, we completed the first total synthesis of 16-hydroxy-16,22-dihydroapparicine, by combining a phosphine-mediated cascade reaction, diastereoselective nucleophilic addition of 2-acylindole or methylketone via a Felkin-Anh transition state, and chirality transferring intramolecular Michael addition. We also clarified the absolute stereochemistries of the compound. Furthermore, we evaluated the activity of the synthetic compound, as well as that of some intermediates, all of which showed weak activity against chloroquine-resistant Plasmodium falciparum (K1 strain) malaria parasites.

摘要

从狗牙花属植物中分离出的5-降马钱子碱生物碱具有一系列生物活性。16-羟基-16,22-二氢阿朴长春胺碱是狗牙花属植物(双瓣狗牙花、秀丽狗牙花和伞花狗牙花)提取物中的活性成分,具有强大的抗疟活性,这是5-降马钱子碱生物碱抗疟特性的首次此类报道。因此,我们决定尝试该化合物的全合成,以探索其抗疟活性,并研究结构与生物活性的关系。结果,我们通过结合膦介导的串联反应、经由费尔金-安过渡态的2-酰基吲哚或甲基酮的非对映选择性亲核加成以及手性转移分子内迈克尔加成,完成了16-羟基-16,22-二氢阿朴长春胺碱的首次全合成。我们还阐明了该化合物的绝对立体化学结构。此外,我们评估了合成化合物以及一些中间体的活性,所有这些化合物对氯喹抗性恶性疟原虫(K1株)均显示出较弱的活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2fb/4935745/14f063212514/11418_2016_1012_Fig1_HTML.jpg

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