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拟南芥 UGT74 葡萄糖基转移酶的比较分析揭示了 UGT74C1 在硫代葡萄糖苷生物合成中的特殊作用。

Comparative analysis of Arabidopsis UGT74 glucosyltransferases reveals a special role of UGT74C1 in glucosinolate biosynthesis.

机构信息

Department of Molecular Signal Processing, Leibniz Institute of Plant Biochemistry, Weinberg 3, 06120, Halle, Germany.

出版信息

Plant J. 2014 Jul;79(1):92-105. doi: 10.1111/tpj.12541. Epub 2014 Jun 13.

Abstract

The study of glucosinolates and their regulation has provided a powerful framework for the exploration of fundamental questions about the function, evolution, and ecological significance of plant natural products, but uncertainties about their metabolism remain. Previous work has identified one thiohydroximate S-glucosyltransferase, UGT74B1, with an important role in the core pathway, but also made clear that this enzyme functions redundantly and cannot be the sole UDP-glucose dependent glucosyltransferase (UGT) in glucosinolate synthesis. Here, we present the results of a nearly comprehensive in vitro activity screen of recombinant Arabidopsis Family 1 UGTs, which implicate other members of the UGT74 clade as candidate glucosinolate biosynthetic enzymes. Systematic genetic analysis of this clade indicates that UGT74C1 plays a special role in the synthesis of aliphatic glucosinolates, a conclusion strongly supported by phylogenetic and gene expression analyses. Finally, the ability of UGT74C1 to complement phenotypes and chemotypes of the ugt74b1-2 knockout mutant and to express thiohydroximate UGT activity in planta provides conclusive evidence for UGT74C1 being an accessory enzyme in glucosinolate biosynthesis with a potential function during plant adaptation to environmental challenge.

摘要

对硫代羟酸酯 S-糖基转移酶(SGT)的研究为探索植物天然产物的功能、进化和生态意义的基本问题提供了一个有力的框架,但它们的代谢仍然存在不确定性。先前的工作已经确定了一个在核心途径中起重要作用的硫代羟酸酯 S-糖基转移酶 UGT74B1,但也清楚地表明,该酶具有冗余功能,不能是芥子油苷合成中唯一依赖 UDP-葡萄糖的糖基转移酶(UGT)。在这里,我们展示了对拟南芥家族 1 UGT 进行近乎全面的体外活性筛选的结果,这表明 UGT74 簇的其他成员可能是芥子油苷生物合成酶的候选酶。对该簇的系统遗传分析表明,UGT74C1 在合成脂肪族芥子油苷中发挥特殊作用,这一结论得到了系统发育和基因表达分析的有力支持。最后,UGT74C1 能够补充 ugt74b1-2 敲除突变体的表型和化学型,并且能够在体内表达硫代羟酸酯 UGT 活性,这为 UGT74C1 作为芥子油苷生物合成的辅助酶提供了确凿的证据,它在植物适应环境挑战的过程中具有潜在的功能。

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