Laboratory of Synthesis and Natural Products, Institute of Chemical Sciences and Engineering, École Polytechnique Fédérale de Lausanne, EPFL-SB-ISIC-LSPN, BCH 5304, 1015, Lausanne, Switzerland.
Chemistry. 2020 Apr 9;26(21):4866-4873. doi: 10.1002/chem.202000415. Epub 2020 Mar 25.
the strategy involving the use of functionalized tetrahydro-6H-cycloocta[b]indol-6-one is reported as a key intermediate for synthesis of members of the sarpagine-ajmaline-macroline family of monoterpene indole alkaloids. The desired tricycle was synthesized through the following key steps: 1) Evans' syn-selective aldolization; 2) Liebeskind-Srogl cross-coupling using the phenylthiol ester of 3-chloropropanoic acid as a surrogate of acrylic thioester for the synthesis of 2,3-disubstituted indoles; and 3) ring-closing metathesis (RCM) for the formation of the eight-membered ring. An N-allylation followed by intramolecular 1,4-addition was planned for synthesis of the vobasine class of natural products. However, attempted cyclizations under a diverse set of conditions involving anionic, radical, and organopalladium/organonickel species failed to produce the bridged ring system. On the other hand, esterification of the pendant primary alcohol function with acetoacetic acid, followed by intramolecular Michael addition, afforded the desired tetracycle with excellent diastereoselectivity. Subsequent functional group manipulation and transannular cyclization of the amino alcohol afforded the N(1)-demethyl-3,5-diepi-alstolactone. We believe that the same synthetic route would afford the alstolactone should the amino alcohol with appropriate stereochemistry be used as the starting material.
涉及使用功能化的四氢-6H-环辛[b]吲哚-6-酮的策略被报道为合成薬根碱-阿吗碱-马罗林单萜吲哚生物碱家族成员的关键中间体。所需的三环通过以下关键步骤合成:1)Evans 选择性 syn-羟醛缩合;2)使用 3-氯丙酸的苯硫酯作为丙烯硫代酯的替代物进行 Liebeskind-Srogl 交叉偶联,用于合成 2,3-取代的吲哚;3)环 closing 复分解(RCM)形成八元环。计划通过 N-烯丙基化和分子内 1,4-加成来合成 vobasine 类天然产物。然而,在涉及阴离子、自由基和有机钯/有机镍物种的多种条件下尝试环化未能产生桥环系统。另一方面,与乙酰乙酸的侧链伯醇功能酯化,然后进行分子内迈克尔加成,以优异的非对映选择性得到所需的四环。随后的官能团操作和氨基醇的反环化得到 N(1)-去甲基-3,5-二表-阿斯特洛内酯。我们相信,如果使用具有适当立体化学的氨基醇作为起始原料,相同的合成路线将得到 alstolactone。