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拟南芥中BAHD酰基转移酶丙二酰辅酶A:花青素5-O-葡萄糖苷-6''-O-丙二酰转移酶(At5MAT)的鉴定与特性分析

Identification and characterization of the BAHD acyltransferase malonyl CoA: anthocyanidin 5-O-glucoside-6''-O-malonyltransferase (At5MAT) in Arabidopsis thaliana.

作者信息

D'Auria John C, Reichelt Michael, Luck Katrin, Svatos Ales, Gershenzon Jonathan

机构信息

Department of Biochemistry, Max Planck Institute for Chemical Ecology, Hans-Knöll Strasse 8, D-07745 Jena, Germany.

出版信息

FEBS Lett. 2007 Mar 6;581(5):872-8. doi: 10.1016/j.febslet.2007.01.060. Epub 2007 Feb 2.

Abstract

The major anthocyanin in A. thaliana is a cyanidin derivative modified by glycosylation as well as by the addition of three acyl moieties: malonyl, p-coumaroyl, and sinapoyl. We have isolated a member of the BAHD acyltransferase family which catalyzes this malonylation reaction by combining a reverse genetics approach with biochemical genomics. A mutant line containing a T-DNA insertion in At3g29590, the gene encoding the malonylating enzyme, is incapable of producing malonylated anthocyanins. Transgenic plants harboring an RNAi silencing cassette for At3g29590 demonstrate a positive correlation between reduction in the At3g29590 gene transcript and the decrease of malonylated anthocyanins. Transcript levels for both At3g29590 and the epistatic gene At4g14090, encoding 5-O-anthocyanin glucosyltransferase, increase in several plant lines as they accumulate anthocyanin pigments. Investigation of the heterologously expressed and purified malonylating enzyme showed that the activity is specific for malonyl-CoA and for anthocyanins with 5-O-glucosylation. The malonyl transfer itself occurs only to the 5-O-glucoside function, and not to any of the other sugar moieties present in A. thaliana anthocyanins. Hence, both in vivo and in vitro results define the activity of the At3g29590-encoded enzyme as an anthocyanin 5-O-glucoside-6''-O-malonyltransferase (At5MAT).

摘要

拟南芥中的主要花青素是一种花青素苷元衍生物,它经过糖基化修饰,并添加了三种酰基部分:丙二酰基、对香豆酰基和芥子酰基。我们通过将反向遗传学方法与生化基因组学相结合,分离出了BAHD酰基转移酶家族的一个成员,该成员催化这种丙二酰化反应。在编码丙二酰化酶的基因At3g29590中含有T-DNA插入的突变株系无法产生丙二酰化花青素。携带针对At3g29590的RNAi沉默盒的转基因植物表明,At3g29590基因转录本的减少与丙二酰化花青素的减少之间存在正相关。At3g29590和上位基因At4g14090(编码5-O-花青素葡糖基转移酶)的转录水平在几个植物株系中随着花青素色素的积累而增加。对异源表达和纯化的丙二酰化酶的研究表明,该活性对丙二酰辅酶A和具有5-O-葡糖基化的花青素具有特异性。丙二酰转移仅发生在5-O-葡糖苷官能团上,而不发生在拟南芥花青素中存在的任何其他糖部分上。因此,体内和体外结果均将At3g29590编码的酶的活性定义为花青素5-O-葡糖苷-6''-O-丙二酰转移酶(At5MAT)。

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