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解析加利福尼亚罂粟(花菱草)苄基异喹啉生物碱生物合成中的其他O-甲基化步骤。

Unraveling Additional O-Methylation Steps in Benzylisoquinoline Alkaloid Biosynthesis in California Poppy (Eschscholzia californica).

作者信息

Purwanto Ratmoyo, Hori Kentaro, Yamada Yasuyuki, Sato Fumihiko

机构信息

Laboratory of Molecular and Cellular Biology of Totipotency, Graduate School of Biostudies, Kyoto University, Kitashirakawa, Sakyo, Kyoto 606-8502, Japan.

出版信息

Plant Cell Physiol. 2017 Sep 1;58(9):1528-1540. doi: 10.1093/pcp/pcx093.

Abstract

California poppy (Eschscholzia californica), a member of the Papaveraceae family, produces many biologically active benzylisoquinoline alkaloids (BIAs), such as sanguinarine, macarpine and chelerythrine. Sanguinarine biosynthesis has been elucidated at the molecular level, and its biosynthetic genes have been isolated and used in synthetic biology approaches to produce BIAs in vitro. However, several genes involved in the biosynthesis of macarpine and chelerythrine have not yet been characterized. In this study, we report the isolation and characterization of a novel O-methyltransferase (OMT) involved in the biosynthesis of partially characterized BIAs, especially chelerythrine. A search of the RNA sequence database from NCBI and PhytoMetaSyn for the conserved OMT domain identified 68 new OMT-like sequences, of which the longest 22 sequences were selected based on sequence similarity. Based on their expression in cell lines with different macarpine/chelerythrine profiles, we selected three OMTs (G2, G3 and G11) for further characterization. G3 expression in Escherichia coli indicated O-methylation activity of the simple benzylisoquinolines, including reticuline and norreticuline, and the protoberberine scoulerine with dual regio-reactivities. G3 produced 7-O-methylated, 3'-O-methylated and dual O-methylated products from reticuline and norreticuline, and 9-O-methylated tetrahydrocolumbamine, 2-O-methylscoulerine and tetrahydropalmatine from scoulerine. Further enzymatic analyses suggested that G3 is a scoulerine-9-O-methyltransferase for the biosynthesis of chelerythrine in California poppy. In the present study, we discuss the physiological role of G3 in BIA biosynthesis.

摘要

加利福尼亚罂粟(Eschscholzia californica)是罂粟科的一员,能产生多种具有生物活性的苄基异喹啉生物碱(BIA),如血根碱、白屈菜赤碱和白屈菜红碱。血根碱的生物合成已在分子水平上得到阐明,其生物合成基因已被分离,并用于合成生物学方法以在体外生产BIA。然而,参与白屈菜赤碱和白屈菜红碱生物合成的几个基因尚未得到表征。在本研究中,我们报告了一种新型O-甲基转移酶(OMT)的分离和表征,该酶参与了部分已表征BIA的生物合成,尤其是白屈菜红碱。在NCBI和PhytoMetaSyn的RNA序列数据库中搜索保守的OMT结构域,鉴定出68个新的类OMT序列,其中基于序列相似性选择了最长的22个序列。根据它们在具有不同白屈菜赤碱/白屈菜红碱谱的细胞系中的表达,我们选择了三个OMT(G2、G3和G11)进行进一步表征。G3在大肠杆菌中的表达表明其对简单苄基异喹啉具有O-甲基化活性,包括网状番荔枝碱和去甲网状番荔枝碱,以及具有双重区域反应性的原小檗碱斯库来碱。G3从网状番荔枝碱和去甲网状番荔枝碱产生7-O-甲基化、3'-O-甲基化和双重O-甲基化产物,从斯库来碱产生9-O-甲基化四氢黄连碱、2-O-甲基斯库来碱和四氢巴马汀。进一步的酶学分析表明,G3是加利福尼亚罂粟中白屈菜红碱生物合成的斯库来碱-9-O-甲基转移酶。在本研究中,我们讨论了G3在BIA生物合成中的生理作用。

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