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ansamitocin 类抗生素的突变生物合成:一种利用生物合成灵活性的多样性导向方法。

Mutational biosynthesis of ansamitocin antibiotics: a diversity-oriented approach to exploit biosynthetic flexibility.

机构信息

Zentrum für Biomolekulare Wirkstoffe (BMWZ), Leibniz Universität, Hannover Schneiderberg 1B, 30167 Hannover, Germany.

出版信息

Chembiochem. 2011 Mar 7;12(4):540-7. doi: 10.1002/cbic.201000608. Epub 2011 Jan 27.

Abstract

New ansamitocin derivatives were prepared by feeding aminobenzoic acid derivatives to cultures of Actinosynnema pretiosum HGF073, a mutant strain blocked in the biosynthesis of the required 3-amino-5-hydroxybenzoic acid (AHBA) starter unit. Use of several aminobenzoic acids as precursors led to a spectrum of products, reflecting the sequence of post-PKS tailoring steps involved in the generation of ansamitocins and adding novel aspects to the published suggestion model of post-PKS tailoring logic and flexibility. The studies provide insights into the substrate flexibility of the enzymes required for ansamitocin biosynthesis in A. pretiosum, whereas preliminary biological testing of the derivatives isolated and fully characterized by NMR spectroscopy allowed structure-activity relationship assignments to be made for a variety of intermediates occurring during the post-PKS tailoring sequence in ansamitocin biosynthesis.

摘要

新型安丝菌素衍生物是通过向 Actinosynnema pretiosum HGF073 的培养物中添加氨基苯甲酸衍生物制备的,该突变株在所需的 3-氨基-5-羟基苯甲酸(AHBA)起始单元的生物合成中受阻。使用几种氨基苯甲酸作为前体导致了一系列产物,反映了参与安丝菌素生成的聚酮合酶后修饰步骤的顺序,并为已发表的聚酮合酶后修饰逻辑和灵活性的建议模型增加了新的方面。这些研究深入了解了 Actinosynnema pretiosum 中安丝菌素生物合成所需酶的底物灵活性,而通过 NMR 光谱对分离和完全表征的衍生物进行的初步生物学测试允许对安丝菌素生物合成中聚酮合酶后修饰序列中出现的各种中间体进行结构-活性关系分配。

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