Tanis Steven P., Deaton Melissa V., Dixon Lisa A., McMills Mark C., Raggon Jeffrey W., Collins Mark A.
Medicinal Chemistry I, 7254-209-6, Pharmacia & Upjohn, Inc., Kalamazoo, Michigan 49001-0199.
J Org Chem. 1998 Oct 2;63(20):6914-6928. doi: 10.1021/jo980718l.
A study of the utility of furan-terminated N-acyliminium ion initiated cyclizations for the synthesis of linearly fused alkaloid precursors (Figure 2) is presented. The outcome of the cyclization event depends on the position of furan tether attachment (2 vs 3), tether length, and furan 5-substituent (R = H, CH(3), Ar). 3-Substituted furans cyclized to form 6- and 7-membered ring containing furans 35-38, 50, and 51 in good to excellent yields. 2-Substituted furans closed to form only 6-membered rings; however, the products obtained were a function of the furan 5-substituent. The 5-H furans 17 and 18 led exclusively to the corresponding furans 21 and 22, while the 5-CH(3)-furans 42 and 43 gave only diketone containing compounds 44 and 45. 5-Arylfurans 66-71 provided mixtures of furan- and diketone-containing products 72-83, with the ratio related to the substitution on the phenyl moiety. A preparation of epilupinine 10 is also discussed.
本文介绍了一项关于呋喃封端的N-酰基亚胺离子引发环化反应在合成线性稠合生物碱前体(图2)中的应用研究。环化反应的结果取决于呋喃连接基的连接位置(2位与3位)、连接基长度以及呋喃5-取代基(R = H、CH(3)、Ar)。3-取代的呋喃发生环化反应,以良好至优异的产率形成含6元和7元环的呋喃35 - 38、50和51。2-取代的呋喃闭环仅形成6元环;然而,所得产物是呋喃5-取代基的函数。5-H呋喃17和18仅生成相应的呋喃21和22,而5-CH(3)-呋喃42和43仅得到含二酮的化合物44和45。5-芳基呋喃66 - 71提供了含呋喃和二酮产物72 - 83的混合物,其比例与苯基部分的取代有关。本文还讨论了表鲁平宁10的制备方法。