Please wait a moment until all data is loaded. This message will disappear when all data is loaded.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
(-)-shikimate + NAD+ = (-)-3-dehydroshikimate + NADH + H+
-
shikimate + NAD+ = 3-dehydroshikimate + NADH + H+
-
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
shikimate + NAD(P)+ = 3-dehydroshikimate + NAD(P)H + H+
shikimate + NAD(P)+ = 3-dehydroshikimate + NAD(P)H + H+
shikimate + NAD(P)+ = 3-dehydroshikimate + NAD(P)H + H+
shikimate + NAD(P)+ = 3-dehydroshikimate + NAD(P)H + H+
shikimate + NAD+ = 3-dehydroshikimate + NADH + H+
shikimate + NAD+ = 3-dehydroshikimate + NADH + H+
shikimate + NAD+ = 3-dehydroshikimate + NADH + H+
shikimate + NAD+ = 3-dehydroshikimate + NADH + H+
shikimate + NADP+ = 3-dehydroshikimate + NADPH
shikimate + NADP+ = 3-dehydroshikimate + NADPH
shikimate + NADP+ = 3-dehydroshikimate + NADPH
shikimate + NADP+ = 3-dehydroshikimate + NADPH
shikimate + NADP+ = 3-dehydroshikimate + NADPH + H+
shikimate + NADP+ = 3-dehydroshikimate + NADPH + H+
shikimate + NADP+ = 3-dehydroshikimate + NADPH + H+
shikimate + NADP+ = 3-dehydroshikimate + NADPH + H+
shikimate + NAD(P)+ = 3-dehydroshikimate + NAD(P)H + H+
-
shikimate + NAD+ = 3-dehydroshikimate + NADH + H+
-
shikimate + NADP+ = 3-dehydroshikimate + NADPH + H+
-
shikimate + 2,6-dichlorophenol indophenol = 3-dehydroshikimate + reduced 2,6-dichlorophenol indophenol
-
shikimate + phenazine methosulfate = 3-dehydroshikimate + reduced phenazine methosulfate
-
shikimate + potassium ferricyanide = 3-dehydroshikimate + reduced potassium ferricyanide
-
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
3-dehydroquinate = 3-dehydroshikimate + H2O
5-dehydroquinate = dehydroshikimate + H2O
5-dehydroquinate = dehydroshikimate + H2O
5-dehydroquinate = dehydroshikimate + H2O
5-dehydroquinate = dehydroshikimate + H2O
5-dehydroquinate = dehydroshikimate + H2O
dehydroquinate = dehydroshikimate + H2O
dehydroquinate = dehydroshikimate + H2O
dehydroquinate = dehydroshikimate + H2O
dehydroquinate = dehydroshikimate + H2O
dehydroquinate = dehydroshikimate + H2O
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
0.046
-
pH 7.5, 30°C, recombinant isozyme CsDQD/SDHd, with NADPH
0.168
-
pH 7.5, 30°C, recombinant isozyme CsDQD/SDHc, with NADPH
0.405
-
pH 7.5, 30°C, recombinant isozyme CsDQD/SDHa, with NADPH
0.73
-
mutant K69A, pH 7.3, 25°C
2.14
-
pH 10.5, 30°C, EcDQD/SDH2, gallate formation
2.87
-
pH 10.5, 30°C, EcDQD/SDH2, gallate formation
3.67
-
pH 7.0, 30°C, EcDQD/SDH1, DQD activity
8.62
-
pH 7.0, 30°C, recombinant isozyme VvSDH3
30.9
-
pH 7.0, 30°C, EcDQD/SDH1, DQD activity
47
-
pH 8.5, 30°C, EcDQD/SDH1, shikimate formation
47
-
pH 8.5, temperature not specified in the publication
49
-
pH 7.0, 25°C, recombinant AroE
49
-
pH 7.0, 25°C, with NADPH
50
-
wild-type enzyme, pH 7.3, 25°C
57.6
-
pH 6.5, 30°C, EcDQD/SDH1, shikimate formation
57.6
-
pH 6.5, temperature not specified in the publication
60.4
-
pH 7.0, 30°C, EcDQD/SDH1, DQD activity
95.85
-
pH 7.0, 30°C, recombinant isozyme VvSDH1
118
-
with NADPH, pH 8.6, 30°C
307
-
pH 6.5, 30°C, EcDQD/SDH1, shikimate formation
307
-
pH 6.5, temperature not specified in the publication
5.67
-
pH 7.0, temperature not specified in the publication, recombinant enzyme, with NADH
329
-
with NADPH, pH 7.0, 30°C
7.7
-
pH 7.5, temperature not specified in the publication, recombinant mutant H168A
61.2
-
pH 7.5, temperature not specified in the publication, recombinant isolated N-terminal domain of the enzyme
99.1
-
pH 7.5, temperature not specified in the publication, recombinant mutant R207A
138.2
-
pH 7.5, temperature not specified in the publication, recombinant mutant E356A
148.1
-
pH 7.5, temperature not specified in the publication, recombinant mutant S206A
163.6
-
pH 7.5, temperature not specified in the publication, recombinant wild-type enzyme
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
0.029
-
wild-type enzyme, pH 7.3, 25°C
0.031
-
pH 7.0, 25°C, recombinant AroE
0.031
-
pH 7.0, 25°C, with NADPH
0.046
-
pH 7.0, 30°C, recombinant isozyme VvSDH3
0.076
-
mutant K69A, pH 7.3, 25°C
0.157
-
pH 7.0, 30°C, recombinant isozyme VvSDH1
0.272
-
with NADPH, pH 8.6, 30°C
0.287
-
pH 7.5, 30°C, recombinant isozyme CsDQD/SDHa, with NADPH
0.322
-
pH 7.0, 30°C, EcDQD/SDH2, DQD activity
0.331
-
pH 7.5, 30°C, recombinant isozyme CsDQD/SDHc, with NADPH
0.381
-
pH 6.5, 30°C, EcDQD/SDH1, shikimate formation
0.381
-
pH 6.5, temperature not specified in the publication
0.449
-
pH 7.0, 30°C, EcDQD/SDH1, DQD activity
0.466
-
pH 7.5, 30°C, recombinant isozyme CsDQD/SDHd, with NADPH
0.878
-
pH 6.5, 30°C, EcDQD/SDH3, shikimate formation
0.878
-
pH 6.5, temperature not specified in the publication
0.882
-
pH 7.0, 30°C, EcDQD/SDH3, DQD activity
8.83
-
pH 8.5, 30°C, EcDQD/SDH2, shikimate formation
8.83
-
pH 8.5, temperature not specified in the publication
9.44
-
pH 10.5, 30°C, EcDQD/SDH2, gallate formation
30.6
-
pH 10.5, 30°C, EcDQD/SDH2, gallate formation
186
-
pH 7.0, 30°C, recombinant isozyme VvSDH4
0.2
-
with NADPH, pH 7.0, 30°C
5.933
-
pH 7.0, temperature not specified in the publication, recombinant enzyme, with NADH
0.134
-
pH 7.5, temperature not specified in the publication, recombinant mutant H168A
0.205
-
pH 7.5, temperature not specified in the publication, recombinant isolated N-terminal domain of the enzyme
0.331
-
pH 7.5, temperature not specified in the publication, recombinant wild-type enzyme
0.429
-
pH 7.5, temperature not specified in the publication, recombinant mutant E356A
2.745
-
pH 7.5, temperature not specified in the publication, recombinant mutant S206A
5.311
-
pH 7.5, temperature not specified in the publication, recombinant mutant R207A
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Aromatic biosynthesis. XII. Conversion of 5-dehydroquinic acid to 5-dehydroshikimic acid by 5-dehydroquinase
1954
Mitsuhashi, S.; Davis, B.D.
Biochim. Biophys. Acta
15
54-61
Purification and stability of the multienzyme complex encoded in the arom gene cluster of Neurospora crassa
1972
Jacobson, J.W.; Hart, B.A.; Doy, C.H.; Giles, N.H.
Biochim. Biophys. Acta
289
1-12
Purification and characterization of 3-dehydroquinate hydrolase and shikmate oxidoreductase. Evidence for a bifunctional enzyme
1978
Polley, L.D.
Biochim. Biophys. Acta
526
259-266
-
Some properties of the initial four enzymes involved in shikimic acid biosynthesis in tea plant
1979
Saijo, R.; Takeo, T.
Agric. Biol. Chem.
43
1427-1432
A new nicotinamide-adenine dinucleotide-dependent hydroaromatic dehydrogenase of Lactobacillus plantarum and its role in formation of (-)t-3,t-4-dihydrocyclohexane-c-1carboxylate
1974
Whiting, G.C.; Coggins, R.A.
Biochem. J.
141
35-42
Aromatic biosynthesis in higher plants I. Preparation and properties of dehydroshikimic reductase
1961
Balinsky, D.; Davies, D.D.
Biochem. J.
80
292-296
-
Shikimate dehydrogenase from pepper (Capsicum annuum) seedlings. Purification and properties
1997
Diaz, J.; Merino, F.
Physiol. Plant.
100
147-152
The 2.3-Ã
crystal structure of the shikimate 5-dehydrogenase orthologue YdiB from Escherichia coli suggests a novel catalytic environment for an NAD-dependent dehydrogenase
2003
Benach, J.; Lee, I.; Edstrom, W.; Kuzin, A.P.; Chiang, Y.; Acton, T.B.; Montelione, G.T.; Hunt, J.F.
J. Biol. Chem.
278
19176-19182
Crystallization and preliminary X-ray crystallographic analysis of type II dehydroquinase from Helicobacter pylori
2001
Kwak, J.E.; Lee, J.Y.; Han, B.W.; Moon, J.J.; Sohn, S.H.; Suh, S.W.
Acta Crystallogr. Sect. D
57
279-280
Comparison of different crystal forms of 3-dehydroquinase from Salmonella typhi and its implication for the enzyme activity
2002
Lee, W.H.; Perles, L.A.; Nagem, R.A.; Shrive, A.K.; Hawkins, A.; Sawyer, L.; Polikarpov, I.
Acta Crystallogr. Sect. D
58
798-804
Specificity of substrate recognition by type II dehydroquinases as revealed by binding of polyanions
2002
Evans, L.D.B.; Roszak, A.W.; Noble, L.J.; Robinson, D.A.; Chalk, P.A.; Matthews, J.L.; Coggins, J.R.; Price, N.C.; Lapthorn, A.J.
FEBS Lett.
530
24-30
The structure and mechanism of the type II dehydroquinase from Streptomyces coelicolor
2002
Roszak, A.W.; Robinson, D.A.; Krell, T.; Hunter, I.S.; Fredrickson, M.; Abell, C.; Coggins, J.R.; Lapthorn, A.J.
Structure
10
493-503
A thermostable shikimate 5-dehydrogenase from the archaeon Archaeoglobus fulgidus
2004
Lim, S.; Schroder, I.; Monbouquette, H.G.
FEMS Microbiol. Lett.
238
101-106
Site-directed mutagenesis of the active site region in the quinate/shikimate 5-dehydrogenase YdiB of Escherichia coli
2005
Lindner, H.A.; Nadeau, G.; Matte, A.; Michel, G.; Menard, R.; Cygler, M.
J. Biol. Chem.
280
7162-7169
Structure of Arabidopsis dehydroquinate dehydratase-shikimate dehydrogenase and implications for metabolic channeling in the shikimate pathway
2006
Singh, S.A.; Christendat, D.
Biochemistry
45
10406
Biochemical characterization and inhibitor discovery of shikimate dehydrogenase from Helicobacter pylori
2006
Han, C.; Wang, L.; Yu, K.; Chen, L.; Hu, L.; Chen, K.; Jiang, H.; Shen, X.
FEBS J.
273
4682-4692
Functional shikimate dehydrogenase from Mycobacterium tuberculosis H37Rv: purification and characterization
2006
Fonseca, I.O.; Magalhaes, M.L.; Oliveira, J.S.; Silva, R.G.; Mendes, M.A.; Palma, M.S.; Santos, D.S.; Basso, L.A.
Protein Expr. Purif.
46
429-437
Functional analysis of the essential bifunctional tobacco enzyme 3-dehydroquinate dehydratase/shikimate dehydrogenase in transgenic tobacco plants
2007
Ding, L.; Hofius, D.; Hajirezaei, M.R.; Fernie, A.R.; Boernke, F.; Sonnewald, U.
J. Exp. Bot.
58
2053-2067
Kinetic and chemical mechanisms of shikimate dehydrogenase from Mycobacterium tuberculosis
2007
Fonseca, I.O.; Silva, R.G.; Fernandes, C.L.; de Souza, O.N.; Basso, L.A.; Santos, D.S.
Arch. Biochem. Biophys.
457
123-133
The missing link in petrobactin biosynthesis: asbF encodes a (-)-3-dehydroshikimate dehydratase
2008
Fox, D.T.; Hotta, K.; Kim, C.Y.; Koppisch, A.T.
Biochemistry
47
12251-12253
Homogeneous recombinant Mycobacterium tuberculosis shikimate dehydrogenase production: an essential step towards target-based drug design
2009
Rodrigues, V.d.a..S.; Basso, L.A.; Santos, D.S.
Int. J. Biol. Macromol.
45
200-205
Purification and characterization of 3-dehydroshikimate dehydratase, an enzyme in the inducible quinic acid catabolic pathway of Neurospora crassa
1978
Stroeman, P.; Reinert, W.R.; Giles, N.H.
J. Biol. Chem.
253
4593-4598
Structural studies of shikimate dehydrogenase from Bacillus anthracis complexed with cofactor NADP
2009
Barcellos, G.B.; Caceres, R.A.; de Azevedo, W.F.
J. Mol. Model.
15
147-155
The conserved Lysine69 residue plays a catalytic role in Mycobacterium tuberculosis shikimate dehydrogenase
2009
Rodrigues, V.S.; Breda, A.; Santos, D.S.; Basso, L.A.
BMC Res. Notes
2
227
Purification and characterization of membrane-bound 3-dehydroshikimate dehydratase from Gluconobacter oxydans IFO 3244, a new enzyme catalyzing extracellular protocatechuate formation
2010
Shinagawa, E.; Adachi, O.; Ano, Y.; Yakushi, T.; Matsushita, K.
Biosci. Biotechnol. Biochem.
74
1084-1088
Characterization of shikimate dehydrogenase homologues of Corynebacterium glutamicum
2013
Kubota, T.; Tanaka, Y.; Hiraga, K.; Inui, M.; Yukawa, H.
Appl. Microbiol. Biotechnol.
97
8139-8149
The shikimate dehydrogenase family: functional diversity within a conserved structural and mechanistic framework
2015
Peek, J.; Christendat, D.
Arch. Biochem. Biophys.
566
85-99
Molecular characterization of quinate and shikimate metabolism in Populus trichocarpa
2014
Guo, J.; Carrington, Y.; Alber, A.; Ehlting, J.
J. Biol. Chem.
289
23846-23858
Identification of novel polyphenolic inhibitors of shikimate dehydrogenase (AroE)
2014
Peek, J.; Shi, T.; Christendat, D.
J. Biomol. Screen.
19
1090-1098
Two shikimate dehydrogenases, VvSDH3 and VvSDH4, are involved in gallic acid biosynthesis in grapevine
2016
Bontpart, T.; Marlin, T.; Vialet, S.; Guiraud, J.L.; Pinasseau, L.; Meudec, E.; Sommerer, N.; Cheynier, V.; Terrier, N.
J. Exp. Bot.
67
3537-3550
Rapid thermostabilization of Bacillus thuringiensis serovar Konkukian 97-27 dehydroshikimate dehydratase through a structure-based enzyme design and whole cell activity assay
2017
Harrington, L.B.; Jha, R.K.; Kern, T.L.; Schmidt, E.N.; Canales, G.M.; Finney, K.B.; Koppisch, A.T.; Strauss, C.E.; Fox, D.T.
ACS Synth. Biol.
6
120-129
Structurally diverse dehydroshikimate dehydratase variants participate in microbial quinate catabolism
2017
Peek, J.; Roman, J.; Moran, G.R.; Christendat, D.
Mol. Microbiol.
103
39-54
Expression of a bacterial 3-dehydroshikimate dehydratase reduces lignin content and improves biomass saccharification efficiency
2015
Eudes, A.; Sathitsuksanoh, N.; Baidoo, E.E.; George, A.; Liang, Y.; Yang, F.; Singh, S.; Keasling, J.D.; Simmons, B.A.; Loque, D.
Plant Biotechnol. J.
13
1241-1250
Elucidating the role of shikimate dehydrogenase in controlling the production of anthocyanins and hydrolysable tannins in the outer peels of pomegranate
2019
Habashi, R.; Hacham, Y.; Dhakarey, R.; Matityahu, I.; Holland, D.; Tian, L.; Amir, R.
BMC Plant Biol.
19
476
Functional analysis of 3-dehydroquinate dehydratase/shikimate dehydrogenases involved in shikimate pathway in Camellia sinensis
2019
Huang, K.; Li, M.; Liu, Y.; Zhu, M.; Zhao, G.; Zhou, Y.; Zhang, L.; Wu, Y.; Dai, X.; Xia, T.; Gao, L.
Front. Plant Sci.
10
1268
Dehydroquinate dehydratase/shikimate dehydrogenases involved in gallate biosynthesis of the aluminum-tolerant tree species Eucalyptus camaldulensis
2020
Tahara, K.; Nishiguchi, M.; Funke, E.; Miyazawa, S.I.; Miyama, T.; Milkowski, C.
Planta
253
3