Yang D, Ye X Y, Xu M
Department of Chemistry, University of Hong Kong, Hong Kong.
J Org Chem. 2000 Apr 7;65(7):2208-17. doi: 10.1021/jo9919613.
The first enantioselective total synthesis of (-)-triptolide (1), (-)-triptonide (2), (+)-triptophenolide (3), and (+)-triptoquinonide (4) was completed. The key step involves lanthanide triflate-catalyzed oxidative radical cyclization of (+)-8-phenylmenthyl ester 30 mediated by Mn(OAc)3, providing intermediate 31 with good chemical yield (77%) and excellent diastereoselectivity (dr 38:1). (+)-Triptophenolide methyl ether (5) was then prepared in > 99% enantiomeric excess (> 99% ee), and readily converted to natural products 1-4. In addition, transition state models were proposed to explain the opposite chiral induction observed in the oxidative radical cyclization reactions of chiral beta-keto esters 17 (without an alpha-substituent) and 17a (with an alpha-chloro substituent).
完成了(-)-雷公藤内酯醇(1)、(-)-雷公藤酮(2)、(+)-雷公藤酚内酯(3)和(+)-雷公藤醌(4)的首次对映选择性全合成。关键步骤包括由三氟甲磺酸镧催化、醋酸锰(III)介导的(+)-8-苯基薄荷酯30的氧化自由基环化反应,以良好的化学产率(77%)和优异的非对映选择性(dr 38:1)得到中间体31。然后制备了对映体过量大于99%(ee>99%)的(+)-雷公藤酚内酯甲醚(5),并将其轻松转化为天然产物1-4。此外,还提出了过渡态模型来解释在手性β-酮酯17(无α-取代基)和17a(有α-氯取代基)的氧化自由基环化反应中观察到的相反的手性诱导现象。