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UGT76F1 将 C7- necic 酸成分的异构体糖基化到拟南芥中的吡咯里西啶生物碱中。

UGT76F1 glycosylates an isomer of the C7-necic acid component of pyrrolizidine alkaloids in Arabidopsis thaliana.

机构信息

Plants for Human Health Institute, North Carolina State University, Kannapolis, NC, 28081, USA.

Department of Plant and Microbial Biology, North Carolina State University, Raleigh, NC, 27695, USA.

出版信息

Plant J. 2023 Jul;115(1):97-107. doi: 10.1111/tpj.16211. Epub 2023 Apr 12.

Abstract

Identification of unknown metabolites and their biosynthetic genes is an active research area in plant specialized metabolism. By following a gene-metabolite association from a genome-wide association study of Arabidopsis stem metabolites, we report a previously unknown metabolite, 2-hydroxy-2-(1-hydroxyethyl)pentanoic acid glucoside, and demonstrated that UGT76F1 is responsible for its production in Arabidopsis. The chemical structure of the glucoside was determined by a series of analyses, including tandem MS, acid and base hydrolysis, and NMR spectrometry. T-DNA knockout mutants of UGT76F1 are devoid of the glucoside but accumulate increased levels of the aglycone. 2-hydroxy-2-(1-hydroxyethyl)pentanoic acid is structurally related to the C7-necic acid component of lycopsamine-type pyrrolizidine alkaloids such as trachelantic acid and viridifloric acid. Feeding norvaline greatly enhances the accumulation of 2-hydroxy-2-(1-hydroxyethyl)pentanoic acid glucoside in wild-type but not the UGT76F1 knockout mutant plants, providing evidence for an orthologous C7-necic acid biosynthetic pathway in Arabidopsis despite the apparent lack of pyrrolizidine alkaloids.

摘要

鉴定未知代谢物及其生物合成基因是植物特化代谢物研究的一个活跃领域。通过对拟南芥茎代谢物的全基因组关联研究中的基因-代谢物关联进行研究,我们报告了一种以前未知的代谢物,2-羟基-2-(1-羟乙基)戊酸葡萄糖苷,并证明 UGT76F1 是其在拟南芥中的生物合成的关键酶。通过一系列分析,包括串联质谱、酸和碱水解以及 NMR 光谱学,确定了糖苷的化学结构。UGT76F1 的 T-DNA 敲除突变体缺乏该糖苷,但积累了更多的糖苷前体。2-羟基-2-(1-羟乙基)戊酸与 lycopsamine 型吡咯里西啶生物碱(如 trachelantic acid 和 viridifloric acid)的 C7-内酰胺酸组分在结构上相关。非天然氨基酸 norvaline 的添加大大增强了 2-羟基-2-(1-羟乙基)戊酸葡萄糖苷在野生型拟南芥中的积累,但在 UGT76F1 敲除突变体中没有,这为拟南芥中存在与 C7-内酰胺酸生物合成途径相关的基因提供了证据,尽管拟南芥中显然缺乏吡咯里西啶生物碱。

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