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首页> 外文期刊>Angewandte Chemie >Synthesis of Macroheterocycles through Intramolecular Oxidative Coupling of Furanoid β-Ketoesters
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Synthesis of Macroheterocycles through Intramolecular Oxidative Coupling of Furanoid β-Ketoesters

机译:呋喃类β-酮酸酯的分子内氧化偶联合成大杂环

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摘要

Furanocembranoids are an intriguing class of marine diter-penoids characterized by a C_(14) cembrane skeleton with an embedded furan heterocycle. Derived from these structures are various more advanced secondary metabolites arising through biooxidation of their furan moieties into more complex cembranoids which often undergo transannular transformations involving carbon-carbon and/or carbon-oxygen bond formations. Bielschowskysin (1), verrillin (2), and plumarellide (3) are three such molecules (Figure 1 a). Their origins can be traced back to exo-enol ether/ cyclic hemiacetal precursors 4,5, and 6, respectively, as shown in Figure 1 a. Methods for the synthesis of the latter precursors are, therefore, crucial to testing such biosynthetic hypotheses and to synthetic strategies toward these natural products. In addition to the cytotoxic and antimalarial properties that many furanocembranoids exhibit, these macrocyclic exo-enol ether/cyclic hemiacetal structural motifs (see A, Figure 1 b) may be of interest to chemical biology and medicinal chemistry as novel molecular diversity whose biological properties remain largely unexplored.
机译:呋喃类化合物是一类有趣的海洋二萜类化合物,其特征是带有嵌入式呋喃杂环的C_(14)膜骨架。从这些结构衍生出各种更高级的次级代谢产物,这些代谢产物是通过呋喃部分的生物氧化而氧化成更复杂的本方体而得的,这些本方体经常经历涉及碳-碳和/或碳-氧键形成的跨环转换。 Bielschowskysin(1),verrillin(2)和plumarellide(3)是三个这样的分子(图1a)。它们的起源可以分别追溯到外烯醇醚/环状半缩醛前体4,5和6,如图1a所示。因此,后一种前体的合成方法对于测试此类生物合成假设以及针对这些天然产物的合成策略至关重要。除了许多呋喃ce类化合物表现出的细胞毒性和抗疟疾特性外,这些大环外烯醇醚/环状半缩醛结构基序(参见A,图1b)可能是化学生物学和药物化学感兴趣的新分子多样性,其生物学特性得以保留很大程度上未开发。

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