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ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
ATP + D-glycerate
ADP + 3-phospho-D-glycerate
ATP + D-glycerate
ADP + 3-phosphoglycerate
ATP + D-glycerate
ADP + phospho-D-glycerate
ATP + glycerate
ADP + 3-phospho-(R)-glycerate
GTP + (R)-glycerate
GDP + 3-phospho-(R)-glycerate
UTP + (R)-glycerate
UDP + 3-phospho-(R)-glycerate
additional information
?
-
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
specific for D-isomer
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
specific for D-isomer
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
no absolute stereospecificity, affinity for D-isomer is 15-fold greater than for L-isomer
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
equilibrium constant is 303
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
apparent rates of glycerate kinase with commercial L-glycerate results from a small contamination of this compound by the D-stereoisomer
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
?
ATP + (R)-glycerate
ADP + 3-phospho-(R)-glycerate
-
apparent rates of glycerate kinase with commercial L-glycerate results from a small contamination of this compound by the D-stereoisomer
-
?
ATP + D-glycerate
ADP + 3-phospho-D-glycerate
-
-
-
-
?
ATP + D-glycerate
ADP + 3-phospho-D-glycerate
-
concluding reaction of the photorespiratory C2 cycle essential for plants to live in oxygenic atmosphere, overview
-
-
?
ATP + D-glycerate
ADP + 3-phospho-D-glycerate
-
the enzyme contains an ATP/GTP binding site motif A, a P-loop, domain
-
-
?
ATP + D-glycerate
ADP + 3-phospho-D-glycerate
-
-
-
-
?
ATP + D-glycerate
ADP + 3-phospho-D-glycerate
-
concluding reaction of the photorespiratory C2 cycle essential for living in oxygenic atmosphere, overview
-
-
?
ATP + D-glycerate
ADP + 3-phospho-D-glycerate
-
-
-
-
?
ATP + D-glycerate
ADP + 3-phosphoglycerate
-
-
-
?
ATP + D-glycerate
ADP + 3-phosphoglycerate
-
-
-
-
?
ATP + D-glycerate
ADP + 3-phosphoglycerate
-
-
-
-
?
ATP + D-glycerate
ADP + 3-phosphoglycerate
-
-
-
?
ATP + D-glycerate
ADP + phospho-D-glycerate
-
-
-
?
ATP + D-glycerate
ADP + phospho-D-glycerate
the position of phosphorylation on D-glycerate is not specified in the publication, cf. EC 2.7.1.165
-
-
?
ATP + glycerate
ADP + 3-phospho-(R)-glycerate
-
-
-
-
?
ATP + glycerate
ADP + 3-phospho-(R)-glycerate
-
coupling of photosynthetic and photorespiratory pathway
-
?
GTP + (R)-glycerate
GDP + 3-phospho-(R)-glycerate
-
-
-
-
?
GTP + (R)-glycerate
GDP + 3-phospho-(R)-glycerate
-
-
-
-
?
GTP + (R)-glycerate
GDP + 3-phospho-(R)-glycerate
-
-
-
-
?
GTP + (R)-glycerate
GDP + 3-phospho-(R)-glycerate
-
less effective than ATP
-
-
?
GTP + (R)-glycerate
GDP + 3-phospho-(R)-glycerate
-
at 42% of the activity with ATP
-
-
?
UTP + (R)-glycerate
UDP + 3-phospho-(R)-glycerate
-
less effective than ATP
-
-
?
UTP + (R)-glycerate
UDP + 3-phospho-(R)-glycerate
-
less effective than ATP
-
-
?
UTP + (R)-glycerate
UDP + 3-phospho-(R)-glycerate
-
less effective than ATP
-
-
?
UTP + (R)-glycerate
UDP + 3-phospho-(R)-glycerate
-
less effective than ATP
-
-
?
UTP + (R)-glycerate
UDP + 3-phospho-(R)-glycerate
-
at 57% of the activity with ATP
-
-
?
additional information
?
-
-
no activity with uridine and ribulose 5-phosphate
-
-
?
additional information
?
-
-
no activity with uridine and ribulose 5-phosphate
-
-
?
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Thorner, J.W.; Paulus, H.
Glycerol and glycerate kinases
The Enzymes,3rd ed. (Boyer,P. D. ,ed. )
8
487-508
1973
Escherichia coli
-
brenda
Ichihara, A.; Greenberg, D.M.
Studies on the purification and properties of D-glyceric acid kinase of liver
J. Biol. Chem.
225
949-958
1957
Bos taurus, Equus caballus, Rattus norvegicus
brenda
Doughty, C.C.; Hayashi, J.A.; Guenther, H.L.
Purification and properties of D-glycerate 3-kinase from Escherichia coli
J. Biol. Chem.
241
568-572
1966
Escherichia coli
brenda
Doughty, C.C.; Hayashi, J.A.
D-glycerate 3-kinase from Escherichia coli
Methods Enzymol.
42
124-127
1975
Escherichia coli
brenda
Saharan, M.M.R.; Singh, R.
Partial purification and characterization of glycerate kinase from immature pods of Brassica campestris
Plant Physiol. Biochem.
31
559-566
1993
Brassica rapa subsp. oleifera
-
brenda
Chaguturu, R.
Glycerate kinase from spinach leaves: partial purification, characterization and subcellular location
Physiol. Plant.
63
19-24
1985
Spinacia oleracea
-
brenda
Kleczkowski, L.A.; Randall, D.D.
Purification and partial characterization of spinach leaf glycerate kinase
FEBS Lett.
158
313-316
1983
Spinacia oleracea
-
brenda
Schmitt, M.R.; Edwards, G.E.
Glycerate kinase from leaves of C3 plants
Arch. Biochem. Biophys.
224
332-341
1983
Avena sativa, Hordeum vulgare, Pisum sativum, Secale cereale
brenda
Kleczkowski, L.A.; Randall, D.D.; Zahler, W.L.
The substrate specificity, kinetics, and mechanism of glycerate-3-kinase from spinach leaves
Arch. Biochem. Biophys.
236
185-194
1985
Spinacia oleracea
brenda
Kleczkowski, L.A.; Randall, D.D.
Substrate stereospecificity of leaf glycerate kinase from C3 and C4 plants
Phytochemistry
27
1269-1273
1988
Spinacia oleracea, Zea mays
-
brenda
Kleczkowski, L.A.; Randall, D.D.
Purification and characterization of D-glycerate 3-kinase from maize leaves
Planta
173
221-229
1988
Zea mays
brenda
Boldt, R.; Edner, C.; Kolukisaoglu, U.; Hagemann, M.; Weckwerth, W.; Wienkoop, S.; Morgenthal, K.; Bauwe, H.
D-Glycerate 3-kinase, the last unknown enzyme in the photorespiratory cycle in Arabidopsis, belongs to a novel kinase family
Plant Cell
17
2413-2420
2005
Arabidopsis thaliana, Saccharomyces cerevisiae
brenda
Guo, J.H.; Hexige, S.; Chen, L.; Zhou, G.J.; Wang, X.; Jiang, J.M.; Kong, Y.H.; Ji, G.Q.; Wu, C.Q.; Zhao, S.Y.; Yu, L.
Isolation and characterization of the human D-glyceric acidemia related glycerate kinase gene GLYCTK1 and its alternatively splicing variant GLYCTK2
DNA Seq.
17
1-7
2006
Mus musculus, Homo sapiens (Q8IVS8), Homo sapiens
brenda
Bartsch, O.; Hagemann, M.; Bauwe, H.
Only plant-type (GLYK) glycerate kinases produce d-glycerate 3-phosphate
FEBS Lett.
582
3025-3028
2008
Oryza sativa, Nostoc sp. PCC 7120 = FACHB-418, Saccharomyces cerevisiae (P42938), Arabidopsis thaliana (Q944I4)
brenda
Bartsch, O.; Mikkat, S.; Hagemann, M.; Bauwe, H.
An autoinhibitory domain confers redox regulation to maize glycerate kinase
Plant Physiol.
153
832-840
2010
Zea mays
brenda
Zelcbuch, L.; Razo-Mejia, M.; Herz, E.; Yahav, S.; Antonovsky, N.; Kroytoro, H.; Milo, R.; Bar-Even, A.
An in vivo metabolic approach for deciphering the product specificity of glycerate kinase proves that both E. colis glycerate kinases generate 2-phosphoglycerate
PLoS ONE
10
e0122957
2015
Arabidopsis thaliana, no activity in Escherichia coli
brenda
Swanson, M.A.; Garcia, S.M.; Spector, E.; Kronquist, K.; Creadon-Swindell, G.; Walter, M.; Christensen, E.; Van Hove, J.L.K.; Sass, J.O.
D-Glyceric aciduria does not cause nonketotic hyperglycinemia a historic co-occurrence
Mol. Genet. Metab.
121
80-82
2017
Homo sapiens (Q8IVS8)
brenda