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两种来自亲缘关系较远的牛蒡(Anthriscus sylvestris)和扁柏(Thujopsis dolabrata var. hondae)的 O-甲基转移酶,是木质素生物合成中谱系特异性进化的特征。

Two O-Methyltransferases from Phylogenetically Unrelated Cow Parsley (Anthriscus sylvestris) and Hinoki-Asunaro (Thujopsis dolabrata var. hondae) as a Signature of Lineage-Specific Evolution in Lignan Biosynthesis.

机构信息

Research Institute for Sustainable Humanosphere, Kyoto University, Gokasho, Uji, Kyoto, 611-0011 Japan.

Faculty of Bioscience and Bioindustry, Tokushima University, Minami-josanjima-cho 2-1, Tokushima, 770-8502 Japan.

出版信息

Plant Cell Physiol. 2023 Feb 16;64(1):124-147. doi: 10.1093/pcp/pcac164.

Abstract

O-Methyltransferases (OMTs) play important roles in antitumor lignan biosynthesis. To date, six OMTs catalyzing the methylation of dibenzylbutyrolactone lignans as biosynthetic precursors of antitumor lignans have been identified. However, there is still no systematic understanding of the diversity and regularity of the biosynthetic mechanisms among various plant lineages. Herein, we report the characterization of two OMTs from Anthriscus sylvestris and Thujopsis dolabrata var. hondae [designated as AsSecoNorYatein (SNY) OMT and TdSNYOMT] together with the six known OMTs to evaluate their diversity and regularity. Although A. sylvestris 5-O-methylthujaplicatin (SecoNorYatein) and 4-O-demethylyatein (NorYatein) OMT (AsSNYOMT) and TdSNYOMT accept 5-O-methylthujaplicatin and 4-O-demethylyatein as substrates, phylogenetic analysis indicated that these two OMTs shared low amino acid sequence identity, 33.8%, indicating a signature of parallel evolution. The OMTs and the six previously identified OMTs were found to be diverse in terms of their substrate specificity, regioselectivity and amino acid sequence identity, indicating independent evolution in each plant species. Meanwhile, two-entropy analysis detected four amino acid residues as being specifically acquired by dibenzylbutyrolactone lignan OMTs. Site-directed mutation of AsSNYOMT indicated that two of them contributed specifically to 5-O-methylthujaplicatin methylation. The results provide a new example of parallel evolution and the diversity and regularity of OMTs in plant secondary (specialized) metabolism.

摘要

O-甲基转移酶(OMTs)在抗肿瘤木脂素生物合成中发挥重要作用。迄今为止,已鉴定出六种催化二苄基丁内酯木脂素作为抗肿瘤木脂素生物合成前体甲基化的 OMT。然而,对于不同植物谱系中各种生物合成机制的多样性和规律性,仍然没有系统的了解。在此,我们报道了 Anthriscus sylvestris 和 Thujopsis dolabrata var. hondae 中的两种 OMT 的特征 [分别命名为 AsSecoNorYatein(SNY)OMT 和 TdSNYOMT],以及六种已知的 OMT,以评估它们的多样性和规律性。尽管 A. sylvestris 5-O-甲基土木香内酯(SecoNorYatein)和 4-O-去甲基耶替宁(NorYatein)OMT(AsSNYOMT)和 TdSNYOMT 接受 5-O-甲基土木香内酯和 4-O-去甲基耶替宁作为底物,但系统发育分析表明这两种 OMT 具有较低的氨基酸序列同一性,为 33.8%,表明存在平行进化的特征。OMTs 和以前鉴定的六种 OMT 在底物特异性、区域选择性和氨基酸序列同一性方面表现出多样性,表明在每种植物物种中独立进化。同时,双熵分析检测到四个氨基酸残基是二苄基丁内酯木脂素 OMT 特有的。AsSNYOMT 的定点突变表明其中两个残基特异性地参与了 5-O-甲基土木香内酯的甲基化。结果为植物次生(特化)代谢中 OMT 的平行进化和多样性提供了新的例证。

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