Cherney Emily C, Baran Phil S
Department of Chemistry, The Scripps Research Institute 10550 N. Torrey Pines Rd, La Jolla, CA 92037 phone: (+1) 858-784-7370 fax: (+1) 858-784-7375.
Isr J Chem. 2011 Apr 1;51(3-4):391-405. doi: 10.1002/ijch.201100005.
Terpenes and alkaloids are ever-growing classes of natural products that provide new molecular structures which inspire chemists and possess a broad range of biological activity. Terpenoid-alkaloids originate from the same prenyl units that construct terpene skeletons. However, during biosynthesis, a nitrogen atom (or atoms) is introduced in the form of β-aminoethanol, ethylamine, or methylamine. Nitrogen incorporation can occur either before, during, or after the cyclase phase. The outcome of this unique biosynthesis is the formation of natural products containing unprecedented structures. These complex structural motifs expose current limitations in organic chemistry, thus providing opportunities for invention. This review focuses on total syntheses of terpenoid-alkaloids and unique issues presented by this class of natural products. More specifically, it examines how these syntheses relate to the way terpenoid-alkaloids are made in Nature. Developments in chemistry that have facilitated these syntheses are emphasized, as well as chemical technology needed to conquer those that evade synthesis.
萜类化合物和生物碱是不断发展的天然产物类别,它们提供了激发化学家灵感的新分子结构,并具有广泛的生物活性。萜类生物碱源自构建萜烯骨架的相同异戊烯基单元。然而,在生物合成过程中,氮原子以β-氨基乙醇、乙胺或甲胺的形式引入。氮的掺入可以发生在环化酶阶段之前、期间或之后。这种独特生物合成的结果是形成了具有前所未有的结构的天然产物。这些复杂的结构基序暴露了有机化学目前的局限性,从而为发明创造提供了机会。本综述重点关注萜类生物碱的全合成以及这类天然产物所呈现的独特问题。更具体地说,它研究了这些合成与萜类生物碱在自然界中的生成方式之间的关系。文中强调了促进这些合成的化学进展,以及攻克那些难以合成的化合物所需的化学技术。