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糖苷特异性糖基转移酶催化芝麻木脂素芝麻素三葡萄糖苷的区域选择性连续葡萄糖基化反应。

Glycoside-specific glycosyltransferases catalyze regio-selective sequential glucosylations for a sesame lignan, sesaminol triglucoside.

作者信息

Ono Eiichiro, Waki Toshiyuki, Oikawa Daiki, Murata Jun, Shiraishi Akira, Toyonaga Hiromi, Kato Masako, Ogata Naoki, Takahashi Seiji, Yamaguchi Masa-Atsu, Horikawa Manabu, Nakayama Toru

机构信息

Suntory Global Innovation Center (SIC) Ltd., Research Institute, Soraku-gun, Kyoto, 619-0284, Japan.

Graduate School of Engineering, Tohoku University, Sendai, Miyagi, 980-8579, Japan.

出版信息

Plant J. 2020 Mar;101(5):1221-1233. doi: 10.1111/tpj.14586. Epub 2019 Dec 3.

Abstract

Sesame (Sesamum indicum) seeds contain a large number of lignans, phenylpropanoid-related plant specialized metabolites. (+)-Sesamin and (+)-sesamolin are major hydrophobic lignans, whereas (+)-sesaminol primarily accumulates as a water-soluble sesaminol triglucoside (STG) with a sugar chain branched via β1→2 and β1→6-O-glucosidic linkages [i.e. (+)-sesaminol 2-O-β-d-glucosyl-(1→2)-O-β-d-glucoside-(1→6)-O-β-d-glucoside]. We previously reported that the 2-O-glucosylation of (+)-sesaminol aglycon and β1→6-O-glucosylation of (+)-sesaminol 2-O-β-d-glucoside (SMG) are mediated by UDP-sugar-dependent glucosyltransferases (UGT), UGT71A9 and UGT94D1, respectively. Here we identified a distinct UGT, UGT94AG1, that specifically catalyzes the β1→2-O-glucosylation of SMG and (+)-sesaminol 2-O-β-d-glucosyl-(1→6)-O-β-d-glucoside [termed SDG(β1→6)]. UGT94AG1 was phylogenetically related to glycoside-specific glycosyltransferases (GGTs) and co-ordinately expressed with UGT71A9 and UGT94D1 in the seeds. The role of UGT94AG1 in STG biosynthesis was further confirmed by identification of a STG-deficient sesame mutant that predominantly accumulates SDG(β1→6) due to a destructive insertion in the coding sequence of UGT94AG1. We also identified UGT94AA2 as an alternative UGT potentially involved in sugar-sugar β1→6-O-glucosylation, in addition to UGT94D1, during STG biosynthesis. Yeast two-hybrid assays showed that UGT71A9, UGT94AG1, and UGT94AA2 were found to interact with a membrane-associated P450 enzyme, CYP81Q1 (piperitol/sesamin synthase), suggesting that these UGTs are components of a membrane-bound metabolon for STG biosynthesis. A comparison of kinetic parameters of these UGTs further suggested that the main β-O-glucosylation sequence of STG biosynthesis is β1→2-O-glucosylation of SMG by UGT94AG1 followed by UGT94AA2-mediated β1→6-O-glucosylation. These findings together establish the complete biosynthetic pathway of STG and shed light on the evolvability of regio-selectivity of sequential glucosylations catalyzed by GGTs.

摘要

芝麻(Sesamum indicum)种子含有大量木脂素,这是一类与苯丙烷类相关的植物特化代谢产物。(+)-芝麻素和(+)-芝麻林素是主要的疏水性木脂素,而(+)-芝麻素醇主要以水溶性的芝麻素醇三糖苷(STG)形式积累,其糖链通过β1→2和β1→6 - O - 糖苷键分支连接[即(+)-芝麻素醇2 - O - β - d - 葡萄糖基 - (1→2)- O - β - d - 葡萄糖苷 - (1→6)- O - β - d - 葡萄糖苷]。我们之前报道过,(+)-芝麻素醇苷元的2 - O - 糖基化以及(+)-芝麻素醇2 - O - β - d - 葡萄糖苷(SMG)的β1→6 - O - 糖基化分别由UDP - 糖依赖性糖基转移酶(UGT)UGT71A9和UGT94D1介导。在此,我们鉴定出一种独特的UGT,即UGT94AG1,它特异性催化SMG和(+)-芝麻素醇2 - O - β - d - 葡萄糖基 - (1→6)- O - β - d - 葡萄糖苷[称为SDG(β1→6)]的β1→2 - O - 糖基化。UGT94AG1在系统发育上与糖苷特异性糖基转移酶(GGT)相关,并在种子中与UGT71A9和UGT94D1协同表达。通过鉴定一个STG缺陷型芝麻突变体进一步证实了UGT94AG1在STG生物合成中的作用,该突变体由于UGT94AG1编码序列中的破坏性插入而主要积累SDG(β1→6)。我们还鉴定出UGT94AA2是STG生物合成过程中除UGT94D1之外可能参与糖 - 糖β1→6 - O - 糖基化的另一种UGT。酵母双杂交试验表明,UGT71A9、UGT94AG1和UGT94AA2与一种膜相关的P450酶CYP81Q1(哌啶醇/芝麻素合酶)相互作用,这表明这些UGT是STG生物合成的膜结合代谢通道的组成部分。对这些UGT动力学参数的比较进一步表明,STG生物合成的主要β - O - 糖基化顺序是UGT94AG1对SMG进行β1→2 - O - 糖基化,随后是UGT94AA2介导的β1→6 - O - 糖基化。这些发现共同确立了STG完整的生物合成途径,并揭示了GGT催化的连续糖基化区域选择性的进化能力。

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