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3'-O-甲基转移酶,Ps3'OMT,来自罂粟:参与罂粟碱生物合成。

3'O-Methyltransferase, Ps3'OMT, from opium poppy: involvement in papaverine biosynthesis.

机构信息

CSIR-National Botanical Research Institute, Council of Scientific and Industrial Research (CSIR-NBRI), Rana Pratap Marg, Lucknow, 226001, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

出版信息

Plant Cell Rep. 2019 Oct;38(10):1235-1248. doi: 10.1007/s00299-019-02439-5. Epub 2019 Jun 12.

Abstract

Using, in silico, in vitro and in planta functional assays, we demonstrate that Ps3'OMT, an 3'-O methyl transferase is linked to papaverine biosynthesis in opium poppy. Papaverine, one of the benzylisoquinoline alkaloids (BIA) synthesized in the medicinally important plant, Papaver somniferum, is known for the potent pharmacological properties. Papaverine biosynthesis has remained debatable as two different pathways, NH (involving N-desmethylated intermediates) and the NCH (involving N-methylated intermediates), have been proposed. In addition, there are several intermediate steps in both the proposed pathways that are not very well characterized in terms of specific enzymes. In this study, we report the identification and functional characterization of 3'O-methyltransferase (Ps3'OMT) which might participate in the 3'O-methylation of the intermediates in the papaverine biosynthesis. Comparison of transcript and metabolite profiles of high and low papaverine producing cultivar revealed the occurrence of a 3'O-methyltransferase, Ps3'OMT, which was abundant in aerial organs and shared 72% identity with the GfLOMT7 predicted to have 3'OMT activity. In silico studies based on homology modeling, docking and MD simulations predicted (S)-norlaudanine as the potential substrate forming a stable complex with Ps3'OMT. Suppression of Ps3'OMT through virus-induced gene silencing resulted in a remarkable decrease in the level of papaverine in comparison to control plants. The characterization of the functionally unique Ps3'OMT involved in BIA metabolism suggests an involvement of the NH pathway leading to papaverine biosynthesis.

摘要

利用计算机模拟、体外和体内功能分析,我们证明 3'-O 甲基转移酶 Ps3'OMT 与罂粟碱生物合成有关,罂粟碱是在药用植物罂粟中合成的苯并异喹啉生物碱(BIA)之一,具有很强的药理学特性。罂粟碱的生物合成一直存在争议,因为已经提出了两种不同的途径,NH(涉及 N-去甲基化中间体)和 NCH(涉及 N-甲基化中间体)。此外,在这两种提出的途径中,还有几个中间步骤在特定酶方面还没有很好地描述。在这项研究中,我们报告了 3'O-甲基转移酶(Ps3'OMT)的鉴定和功能表征,它可能参与罂粟碱生物合成中间产物的 3'O-甲基化。高、低罂粟碱产生品种的转录组和代谢物谱比较显示,存在一种 3'O-甲基转移酶 Ps3'OMT,它在地上器官中丰富,与预测具有 3'OMT 活性的 GfLOMT7 具有 72%的同一性。基于同源建模、对接和 MD 模拟的计算机模拟预测(S)-去甲罂粟碱是与 Ps3'OMT 形成稳定复合物的潜在底物。与对照植物相比,通过病毒诱导的基因沉默抑制 Ps3'OMT 导致罂粟碱水平显著降低。涉及 BIA 代谢的功能独特的 Ps3'OMT 的表征表明 NH 途径参与了罂粟碱生物合成。

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