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Bioinspired iterative synthesis of polyketides

机译:生物启发的聚酮化合物的迭代合成

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摘要

Diverse array of biopolymers and second metabolites (particularly polyketide natural products) has been manufactured in nature through an enzymatic iterative assembly of simple building blocks. Inspired by this strategy, molecules with inherent modularity can be efficiently synthesized by repeated succession of similar reaction sequences. This privileged strategy has been widely adopted in synthetic supramolecular chemistry. Its value also has been reorganized in natural product synthesis. A brief overview of this approach is given with a particular emphasis on the total synthesis of polyol-embedded polyketides, a class of vastly diverse structures and biologically significant natural products. This viewpoint also illustrates the limits of known individual modules in terms of diastereoselectivity and enantioselectivity. More efficient and practical iterative strategies are anticipated to emerge in the future development.
机译:生物聚合物和第二种代谢产物(尤其是聚酮化合物天然产物)的多样化排列是通过简单的结构单元的酶促迭代组装在自然界中制造的。受此策略的启发,具有内在模块化的分子可以通过重复连续相似的反应序列来有效地合成。这种特权策略已被合成超分子化学广泛采用。它的价值也已在天然产物合成中重新组织。简要概述了该方法,特别强调了多元醇包埋的聚酮化合物的全合成,一类种类繁多的结构和具有生物学意义的天然产物。该观点还说明了非对映选择性和对映选择性方面已知的单个模块的限制。预期在未来的发展中将出现更有效和实用的迭代策略。

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