Munakata Ryosuke, Katakai Hironori, Ueki Tatsuo, Kurosaka Jun, Takao Ken-Ichi, Tadano Kin-Ichi
Department of Applied Chemistry, Keio University, Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.
J Am Chem Soc. 2004 Sep 15;126(36):11254-67. doi: 10.1021/ja048320w.
A total synthesis of the macquarimicins A-C (1-3), novel natural products with intriguing tetra- or pentacyclic frameworks, has been achieved. The synthesis features an extensive investigation of the biosynthesis-based intramolecular Diels-Alder (IMDA) reactions of (E,Z,E)-1,6,8-nonatrienes. Considering possible biosynthetic sequences, four types of substrates were synthesized, and their IMDA reactions were examined. From one of the four substrates, the total synthesis was achieved via a transannular Diels-Alder reaction, which led to the stereoselective construction of the unique molecular framework. The convergent and efficient synthetic pathway afforded (+)-1 in 27 linear steps with 4.3% and 9.9% overall yields from readily available ethyl (2E,4S)-4,5-(isopropylidene)dioxy-2-pentenoate (22) and (R)-epichlorohydrin (30), respectively. Furthermore, efficient syntheses of 2, 3, and the 9-epi-cochleamycins A (57) and B (58) were accomplished. Additionally, the present work established the absolute stereochemistry of macquarimicins and revised the C(2)--C(3) geometry of 1.
麦夸里霉素A - C(1 - 3)是具有有趣四环或五环骨架的新型天然产物,其全合成已实现。该合成的特点是对(E,Z,E)-1,6,8 - 壬三烯基于生物合成的分子内狄尔斯 - 阿尔德(IMDA)反应进行了广泛研究。考虑到可能的生物合成序列,合成了四种类型的底物,并对它们的IMDA反应进行了研究。从这四种底物中的一种出发,通过跨环狄尔斯 - 阿尔德反应实现了全合成,该反应导致了独特分子骨架的立体选择性构建。这种汇聚且高效的合成途径以27个线性步骤从易得的(2E,4S)-4,5 - (亚异丙基)二氧基 - 2 - 戊烯酸乙酯(22)和(R)-环氧氯丙烷(30)分别以4.3%和9.9%的总收率得到了(+)-1。此外,还完成了2、3以及9 - 表 - 耳蜗霉素A(57)和B(58)的高效合成。此外,本工作确定了麦夸里霉素的绝对立体化学,并修正了1的C(2)-C(3)几何结构。