Desulfoglucosinolate sulfotransferases from Arabidopsis thaliana catalyze the final step in the biosynthesis of the glucosinolate core structure

被引:160
作者
Piotrowski, M
Schemenewitz, A
Lopukhina, A
Müller, A
Janowitz, T
Weiler, EW
Oecking, C
机构
[1] Ruhr Univ Bochum, Dept Plant Physiol, D-44801 Bochum, Germany
[2] Univ Tubingen, Ctr Plant Mol Biol, D-72076 Tubingen, Germany
关键词
D O I
10.1074/jbc.M407681200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The phytotoxin coronatine is a structural analog of octadecanoid signaling molecules, which are well known mediators of plant defense reactions. To isolate novel coronatine-regulated genes from Arabidopsis thaliana, differential mRNA display was performed. Transcript levels of CORI-7 ( coronatine induced-7) were rapidly and transiently increased in coronatine-treated plants, and the corresponding cDNA was found to encode the sulfotransferase AtST5a. Likewise, upon wounding, an immediate and transient increase in AtST5a mRNA levels could be observed in both locally wounded and unwounded ( systemic) leaves. Furthermore, application of octadecanoids and ethylene as compounds involved in plant wound defense reactions resulted in AtST5a gene activation, whereas pathogen defense-related signals ( yeast elicitor and salicylic acid) were inactive. AtST5a and its close homologs AtST5b and AtST5c were purified as His(6)-tagged proteins from Escherichia coli. The three enzymes were shown to catalyze the final step in the biosynthesis of the glucosinolate (GS) core structure, the sulfation of desulfoglucosinolates (dsGSs). They accept a broad range of dsGSs as substrates. However, in a competitive situation, AtST5a clearly prefers tryptophan- and phenylalanine-derived dsGSs, whereas long chain dsGSs derived from methionine are the preferred substrates of AtST5b and AtST5c. Treatment of Arabidopsis plants with low concentrations of coronatine resulted in an increase in the amounts of specific GSs, primarily glucobrassicin and neoglucobrassicin. Hence, it is suggested that AtST5a is the sulfotransferase responsible for the biosynthesis of tryptophan- derived GSs in vivo.
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页码:50717 / 50725
页数:9
相关论文
共 49 条
[1]   CLONING AND REGULATION OF FLAVONOL 3-SULFOTRANSFERASE IN CELL-SUSPENSION CULTURES OF FLAVERIA-BIDENTIS [J].
ANANVORANICH, S ;
VARIN, L ;
GULICK, P ;
IBRAHIM, R .
PLANT PHYSIOLOGY, 1994, 106 (02) :485-491
[2]   FLAVONOL SULFOTRANSFERASE-LIKE CDNA CLONE FROM FLAVERIA-BIDENTIS [J].
ANANVORANICH, S ;
GULICK, P ;
IBRAHIM, RK .
PLANT PHYSIOLOGY, 1995, 107 (03) :1019-1020
[3]  
Ausubel FM, 2004, CURRENT PROTOCOLS MO
[4]   CYP83B1, a cytochrome P450 at the metabolic branch paint in auxin and indole glucosinolate biosynthesis in Arabidopsis [J].
Bak, S ;
Tax, FE ;
Feldmann, KA ;
Galbraith, DW ;
Feyereisen, R .
PLANT CELL, 2001, 13 (01) :101-111
[5]   The involvement of two P450 enzymes, CYP83B1 and CYP83A1, in auxin homeostasis and glucosinolate biosynthesis [J].
Bak, S ;
Feyereisen, R .
PLANT PHYSIOLOGY, 2001, 127 (01) :108-118
[7]   The SUR2 gene of Arabidopsis thaliana encodes the cytochrome P450CYP83B1, a modulator of auxin homeostasis [J].
Barlier, I ;
Kowalczyk, M ;
Marchant, A ;
Ljung, K ;
Bhalerao, R ;
Bennett, M ;
Sandberg, G ;
Bellini, C .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (26) :14819-14824
[8]   SULFATED FLAVONOIDS - AN UPDATE [J].
BARRON, D ;
VARIN, L ;
IBRAHIM, RK ;
HARBORNE, JB ;
WILLIAMS, CA .
PHYTOCHEMISTRY, 1988, 27 (08) :2375-2395
[9]   Involvement of cytochrome P450 in glucosinolate biosynthesis in white mustard - A biochemical anomaly [J].
Bennett, RN ;
Kiddle, G ;
Wallsgrove, RM .
PLANT PHYSIOLOGY, 1997, 114 (04) :1283-1291
[10]   POTENT EFFECT OF JASMONATES ON INDOLE GLUCOSINOLATES IN OILSEED RAPE AND MUSTARD [J].
BODNARYK, RP .
PHYTOCHEMISTRY, 1994, 35 (02) :301-305