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吡咯并苯二氮卓类中烷基脯氨酸部分的多样性源于统一构建模块的缩合后修饰。

Diversity of Alkylproline Moieties in Pyrrolobenzodiazepines Arises from Postcondensation Modifications of a Unified Building Block.

作者信息

Kamenik Zdenek, Kadlcik Stanislav, Gazak Radek, Vobruba Simon, Palanova Lucie, Kuzma Marek, Janata Jiri

机构信息

Institute of Microbiology, Czech Academy of Sciences , 142 20 Prague 4, Czech Republic.

出版信息

ACS Chem Biol. 2017 Aug 18;12(8):1993-1998. doi: 10.1021/acschembio.7b00335. Epub 2017 Jul 14.

Abstract

Anticancer pyrrolobenzodiazepines (PBDs) are one of several groups of natural products that contain unusual 4-alkyl-l-proline derivatives (APDs) in their structure. APD moieties of PBDs are characterized by high structural diversity achieved through unknown biosynthetic machinery. Based on LC-MS analysis of culture broths, feeding experiments, and protein assays, we show that APDs are not incorporated into PBDs in their final form as was previously hypothesized. Instead, a uniform building block, 4-propylidene-l-proline or 4-ethylidene-l-proline, enters the condensation reaction. The subsequent postcondensation steps are initiated by the introduction of an additional double bond catalyzed by a FAD-dependent oxidoreductase, which we demonstrated with Orf7 from anthramycin biosynthesis. The resulting double bond arrangement presumably represents a prerequisite for further modifications of the APD moieties. Our study gives general insight into the diversification of APD moieties of natural PBDs and provides proof-of-principle for precursor directed and combinatorial biosynthesis of new PBD-based antitumor compounds.

摘要

抗癌吡咯并苯二氮卓类化合物(PBDs)是几类天然产物之一,其结构中含有不寻常的4-烷基-L-脯氨酸衍生物(APDs)。PBDs的APD部分具有高度的结构多样性,这种多样性是通过未知的生物合成机制实现的。基于对培养液的液相色谱-质谱分析、饲喂实验和蛋白质分析,我们发现APD并非如先前假设的那样以其最终形式掺入PBDs中。相反,一种统一的结构单元,即4-亚丙基-L-脯氨酸或4-亚乙基-L-脯氨酸,进入缩合反应。随后的缩合后步骤由一种FAD依赖的氧化还原酶催化引入额外的双键引发,我们通过氨茴霉素生物合成中的Orf7证明了这一点。由此产生的双键排列可能是APD部分进一步修饰的前提条件。我们的研究深入了解了天然PBDs的APD部分的多样化,并为基于PBD的新型抗肿瘤化合物的前体导向和组合生物合成提供了原理证明。

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