Structure and mechanism of anthocyanidin synthase from Arabidopsis thaliana

被引:327
作者
Wilmouth, RC
Turnbull, JJ
Welford, RWD
Clifton, IJ
Prescott, AG
Schofield, CJ
机构
[1] Dyson Perrins Lab, Oxford OX1 3QY, England
[2] Oxford Ctr Mol Sci, Oxford OX1 3QY, England
[3] John Innes Ctr Plant Sci Res, Dept Appl Genet, Norwich NR4 7UH, Norfolk, England
基金
英国生物技术与生命科学研究理事会; 英国医学研究理事会;
关键词
D O I
10.1016/S0969-2126(01)00695-5
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
Flavonoids are common colorants in plants and have long-established biomedicinal properties. Anthocyanidin synthase (ANS), a 2-oxoglutarate iron-dependent oxygenase, catalyzes the penultimate step in the biosynthesis of the anthocyanin class of flavonoids. The crystal structure of ANS reveals a multicomponent active site containing metal, cosubstrate, and two molecules of a substrate analog (dihydroquercetin). An additional structure obtained after 30 min exposure to dioxygen is consistent with the oxidation of the dihydroquercetin to quercetin and the concomitant decarboxylation of 2-oxoglutarate to succinate. Together with in vitro studies, the crystal structures suggest a mechanism for ANS-catalyzed anthocyanidin formation from the natural leucoanthocyanidin substrates involving stereoselective C-3 hydroxylation. The structure of ANS provides a template for the ubiquitous family of plant nonhaem oxygenases for future engineering and inhibition studies.
引用
收藏
页码:93 / 103
页数:11
相关论文
共 52 条
  • [11] High resolution x-ray crystallography shows that ascorbate is a cofactor for myrosinase and substitutes for the function of the catalytic base
    Burmeister, WP
    Cottaz, S
    Rollin, P
    Vasella, A
    Henrissat, B
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (50) : 39385 - 39393
  • [12] C-elegans EGL-9 and mammalian homologs define a family of dioxygenases that regulate HIF by prolyl hydroxylation
    Epstein, ACR
    Gleadle, JM
    McNeill, LA
    Hewitson, KS
    O'Rourke, J
    Mole, DR
    Mukherji, M
    Metzen, E
    Wilson, MI
    Dhanda, A
    Tian, YM
    Masson, N
    Hamilton, DL
    Jaakkola, P
    Barstead, R
    Hodgkin, J
    Maxwell, PH
    Pugh, CW
    Schofield, CJ
    Ratcliffe, PJ
    [J]. CELL, 2001, 107 (01) : 43 - 54
  • [13] An extensively modified version of MolScript that includes greatly enhanced coloring capabilities
    Esnouf, RM
    [J]. JOURNAL OF MOLECULAR GRAPHICS & MODELLING, 1997, 15 (02) : 132 - +
  • [14] Structure of chalcone synthase and the molecular basis of plant polyketide biosynthesis
    Ferrer, JL
    Jez, JM
    Bowman, ME
    Dixon, RA
    Noel, JP
    [J]. NATURE STRUCTURAL BIOLOGY, 1999, 6 (08) : 775 - 784
  • [15] Advances in flavonoid research since 1992
    Harborne, JB
    Williams, CA
    [J]. PHYTOCHEMISTRY, 2000, 55 (06) : 481 - 504
  • [16] The Alrestatin double-decker: Binding of two inhibitor molecules to human aldose reductase reveals a new specificity determinant
    Harrison, DHT
    Bohren, KM
    Petsko, GA
    Ringe, D
    Gabbay, KH
    [J]. BIOCHEMISTRY, 1997, 36 (51) : 16134 - 16140
  • [17] Genetic analysis of gibberellin biosynthesis
    Hedden, P
    Proebsting, WM
    [J]. PLANT PHYSIOLOGY, 1999, 119 (02) : 365 - 370
  • [18] LEUCOANTHOCYANIDINS AS INTERMEDIATES IN ANTHOCYANIDIN BIOSYNTHESIS IN FLOWERS OF MATTHIOLA-INCANA R-BR
    HELLER, W
    BRITSCH, L
    FORKMANN, G
    GRISEBACH, H
    [J]. PLANTA, 1985, 163 (02) : 191 - 196
  • [19] Heller W., 1993, P499
  • [20] HELLER W, 1988, FLAVONOIDS, P400