Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge, UK.
Chembiochem. 2010 Mar 1;11(4):539-46. doi: 10.1002/cbic.200900772.
Modular biocatalysis is responsible for the generation of countless bioactive products and its mining remains a major focus for drug discovery purposes. One of the enduring hurdles is the isolation of biosynthetic intermediates in a readily-analysed form. We prepared a series of nonhydrolysable pantetheine and N-acetyl cysteamine mimics of the natural (methyl)malonyl extender units recruited for polyketide formation. Using these analogues as competitive substrates, we were able to trap and off-load diketide and triketide species directly from an in vitro reconstituted type I polyketide synthase, the 6-deoxyerythronolide B synthase 3 (DEBS3). The putative intermediates, which were extracted in organic solvent and characterised by LC-HR-ESI-MS, are the first of their kind and prove that small-molecule chain terminators can be used as convenient probes of the biosynthetic process.
模块化生物催化负责生成无数具有生物活性的产品,其挖掘仍然是药物发现的主要重点。其中一个持久的障碍是生物合成中间体以易于分析的形式分离。我们制备了一系列天然(甲基)丙二酰延伸单元的不可水解泛肽和 N-乙酰半胱氨酸类似物,用于聚酮形成。使用这些类似物作为竞争性底物,我们能够直接从体外重建的 I 型聚酮合酶(6-脱氧赤藓醇 B 合酶 3(DEBS3)中捕获和卸载二酮和三酮。用 LC-HR-ESI-MS 提取并表征的假定中间体是同类产品中的第一批,证明小分子链终止剂可用作生物合成过程的方便探针。