首页> 外文期刊>Planta >A type III polyketide synthase from Wachendorfia thyrsiflora and its role in diarylheptanoid and phenylphenalenone biosynthesis
【24h】

A type III polyketide synthase from Wachendorfia thyrsiflora and its role in diarylheptanoid and phenylphenalenone biosynthesis

机译:Wachendorfia thyrsiflora的III型聚酮化合物合酶及其在二芳基庚烷和苯基苯丙烯酮生物合成中的作用

获取原文
获取原文并翻译 | 示例
           

摘要

Chalcone synthase (CHS) related type III plant polyketide synthases (PKSs) are likely to be involved in the biosynthesis of diarylheptanoids (e.g. curcumin and polycyclic phenylphenalenones), but no such activity has been reported. Root cultures from Wachendorfia thyrsiflora (Haemodoraceae) are a suitable source to search for such enzymes because they synthesize large amounts of phenylphenalenones, but no other products that are known to require CHSs or related enzymes (e.g. flavonoids or stilbenes). A homology-based RT-PCR strategy led to the identification of cDNAs for a type III PKS sharing only approximately 60% identity with typical CHSs. It was named WtPKS1 (W. thyrsiflora polyketide synthase 1). The purified recombinant protein accepted a large variety of aromatic and aliphatic starter CoA esters, including phenylpropionyl- and side-chain unsaturated phenylpropanoid-CoAs. The simplest model for the initial reaction in diarylheptanoid biosynthesis predicts a phenylpropanoid-CoA as starter and a single condensation reaction to a diketide. Benzalacetones, the expected release products, were observed only with unsaturated phenylpropanoid-CoAs, and the best results were obtained with 4-coumaroyl-CoA (80% of the products). With all other substrates, WtPKS1 performed two condensation reactions and released pyrones. We propose that WtPKS1 catalyses the first step in diarylheptanoid biosynthesis and that the observed pyrones are derailment products in the absence of downstream processing proteins.
机译:查尔酮合酶(CHS)相关的III型植物聚酮化合物合酶(PKSs)可能参与了二芳基庚烷类物质(例如姜黄素和多环苯基苯乙酮)的生物合成,但尚未报道这种活性。 Wachendorfia thyrsiflora(Haemodoraceae)的根系培养物是搜寻此类酶的合适来源,因为它们合成了大量的苯基苯乙酮,但没有其他已知需要CHSs或相关酶的产品(例如黄酮类化合物或对苯二酚)。基于同源性的RT-PCR策略导致鉴定出III型PKS与典型CHS仅具有约60%的同一性的cDNA。它被命名为WtPKS1(W。thyrsiflora polyketide合酶1)。纯化的重组蛋白接受了各种芳香族和脂肪族起始剂CoA酯,包括苯基丙酰基和侧链不饱和苯基丙烷-CoA。在二芳基庚烷生物合成中最简单的初始反应模型预测苯基丙烷-CoA作为起始剂和对二酮化合物的单个缩合反应。仅使用不饱和苯基丙烷-CoA可以观察到预期释放的产物苯甲醛丙酮,使用4-香豆酰基-CoA(80%的产品)可获得最佳结果。与所有其他底物一起,WtPKS1进行了两次缩合反应并释放出吡喃酮。我们建议WtPKS1催化二芳基庚烷生物合成的第一步,并且在没有下游加工蛋白的情况下,所观察到的吡喃酮是脱轨产物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号