Fuwa Haruhiko, Yamagata Naoya, Okuaki Yuta, Ogata Yuya, Saito Asami, Sasaki Makoto
Graduate School of Life Sciences, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai, 980-8577, Japan.
Chemistry. 2016 May 10;22(20):6815-29. doi: 10.1002/chem.201600341. Epub 2016 Apr 26.
We have described in detail the total synthesis of both the proposed and correct structures of (-)-lyngbyaloside B, which facilitated the elucidation of the complete stereostructure of this natural product. Our study began with the total synthesis of 13-demethyllyngbyaloside B, in which an esterification/ring-closing metathesis (RCM) strategy was successfully used for the efficient construction of the macrocycle. We also established reliable methods for the introduction of the conjugated diene side chain and the l-rhamnose residue onto the macrocyclic framework. However, the esterification/RCM strategy proved ineffective for the parent natural product because of the difficulties in acylating the sterically encumbered C-13 tertiary alcohol; macrolactionization of a seco-acid was also extensively investigated under various conditions without success. We finally completed the total synthesis of the proposed structure of (-)-lyngbyaloside B by means of a macrolactonization that involves an acyl ketene as the reactive species. However, the NMR spectroscopic data of our synthetic material did not match those of the authentic material, which indicated that the proposed structure must be re-examined. Inspection of the NMR spectroscopic data of the natural product and molecular mechanics calculations led us to postulate that the configuration of the C-10, C-11, and C-13 stereogenic centers had been incorrectly assigned in the proposed structure. Finally, our revised structure of (-)-lyngbyaloside B was unambiguously verified through total synthesis.
我们已经详细描述了(-)-林格比糖苷B的推测结构和正确结构的全合成过程,这有助于阐明该天然产物的完整立体结构。我们的研究始于13-去甲基林格比糖苷B的全合成,其中成功地采用了酯化/闭环复分解(RCM)策略来高效构建大环。我们还建立了可靠的方法,将共轭二烯侧链和L-鼠李糖残基引入到大环骨架上。然而,由于对空间位阻较大的C-13叔醇进行酰化存在困难,酯化/RCM策略对母体天然产物无效;在各种条件下对开链酸进行大环内酯化反应也进行了广泛研究,但均未成功。我们最终通过以酰基乙烯酮作为反应物种的大环内酯化反应完成了(-)-林格比糖苷B推测结构的全合成。然而,我们合成材料的核磁共振光谱数据与真品材料的数据不匹配,这表明推测结构必须重新审视。对天然产物的核磁共振光谱数据进行检查和分子力学计算后,我们推测在推测结构中C-10、C-11和C-13立体中心的构型被错误指定。最后,我们对(-)-林格比糖苷B的修订结构通过全合成得到了明确验证。