Department of Biological Sciences, University of Calgary, Calgary, Alberta T2N 1N4, Canada.
Plant J. 2009 Nov;60(4):729-43. doi: 10.1111/j.1365-313X.2009.03980.x. Epub 2009 Jul 16.
An integrated approach using targeted metabolite profiles and modest EST libraries each containing approximately 3500 unigenes was developed in order to discover and functionally characterize novel genes involved in plant-specialized metabolism. EST databases have been established for benzylisoquinoline alkaloid-producing cell cultures of Eschscholzia californica, Papaver bracteatum and Thalictrum flavum, and are a rich repository of alkaloid biosynthetic genes. ESI-FTICR-MS and ESI-MS/MS analyses facilitated unambiguous identification and relative quantification of the alkaloids in each system. Manual integration of known and candidate biosynthetic genes in each EST library with benzylisoquinoline alkaloid biosynthetic networks assembled from empirical metabolite profiles allowed identification and functional characterization of four N-methyltransferases (NMTs). One cDNA from T. flavum encoded pavine N-methyltransferase (TfPavNMT), which showed a unique preference for (+/-)-pavine and represents the first isolated enzyme involved in the pavine alkaloid branch pathway. Correlation of the occurrence of specific alkaloids, the complement of ESTs encoding known benzylisoquinoline alkaloid biosynthetic genes and the differential substrate range of characterized NMTs demonstrated the feasibility of bilaterally predicting enzyme function and species-dependent specialized metabolite profiles.
为了发现并对参与植物特化代谢的新基因进行功能表征,我们采用靶向代谢物图谱和适度表达序列标签 (EST) 文库的综合方法,每个文库包含约 3500 个基因。已经为加利福尼亚罂粟、块根罂粟和唐松草的苯并异喹啉生物碱产生细胞培养物建立了 EST 数据库,这些数据库是生物碱生物合成基因的丰富来源。ESI-FTICR-MS 和 ESI-MS/MS 分析有助于明确鉴定和相对定量每个系统中的生物碱。将每个 EST 文库中已知和候选生物合成基因与从经验代谢物图谱组装的苯并异喹啉生物碱生物合成网络手动整合,鉴定并对四个 N-甲基转移酶 (NMT) 进行了功能表征。来自唐松草的一个 cDNA 编码了原阿片碱 N-甲基转移酶(TfPavNMT),它对(±)-原阿片碱表现出独特的偏好,这是第一个分离的参与原阿片碱生物碱分支途径的酶。特定生物碱的出现、编码已知苯并异喹啉生物碱生物合成基因的 EST 的组成以及表征的 NMT 的差异底物范围的相关性表明,从双侧预测酶功能和物种特有的特化代谢产物图谱是可行的。