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化学家能从自然界的大环化合物中学到什么?——一个简要的概念性观点。

What can a chemist learn from nature's macrocycles?--a brief, conceptual view.

作者信息

Wessjohann Ludger A, Ruijter Eelco, Garcia-Rivera Daniel, Brandt Wolfgang

机构信息

Leibniz-Institute of Plant Biochemistry, Department of Bioorganic Chemistry, Weinberg 3, D-06120 Halle (Saale), Germany,

出版信息

Mol Divers. 2005;9(1-3):171-86. doi: 10.1007/s11030-005-1314-x.

Abstract

Macrocyclic natural products often display remarkable biological activities, and many of these compounds (or their derivatives) are used as drugs. The chemical diversity of these compounds is immense and may provide inspiration for innovative drug design. Therefore, a database of naturally occurring macrocycles was analyzed for ring size, molecular weight distribution, and the frequency of some common substructural motifs. The underlying principles of the chemical diversity are reviewed in terms of biosynthetic origin and nature's strategies for diversity and complexity generation in relation to the structural diversity and similarities found in the macrocycle database. Finally, it is suggested that synthetic chemists should use not only nature's molecules, but also nature's strategies as a source of inspiration. To illustrate this, the biosynthesis of macrocycles by non-ribosomal peptide synthetases and terpene and polyketide cyclases, as well as recent advances of these strategies in an integrated synthesis/biotechnology approach are briefly reviewed.

摘要

大环天然产物通常具有显著的生物活性,其中许多化合物(或其衍生物)被用作药物。这些化合物的化学多样性极为丰富,可能为创新药物设计提供灵感。因此,对一个天然存在的大环化合物数据库进行了分析,以研究其环大小、分子量分布以及一些常见亚结构基序的出现频率。从生物合成起源以及自然界在大环化合物数据库中发现的结构多样性和相似性方面生成多样性和复杂性的策略角度,对化学多样性的潜在原理进行了综述。最后,建议合成化学家不仅应将天然分子,而且应将自然界的策略作为灵感来源。为了说明这一点,简要回顾了非核糖体肽合成酶、萜类和聚酮环化酶合成大环化合物的生物合成过程,以及这些策略在综合合成/生物技术方法中的最新进展。

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