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ATP + RNA polymerase II
ADP + phosphorylated RNA polymerase II
ATP + histone H1
ADP + phosphorylated histone H1
-
-
-
-
?
ATP + RNA polymerase II
ADP + phosphorylated RNA polymerase II
-
-
-
?
N6-PhEt-ATP-gamma-S + 1-deoxy-D-xylulose 5-phosphate reductoisomerase
?
-
gene locus At5g62790
-
-
?
N6-PhEt-ATP-gamma-S + 20S proteasome alpha subunit PAD1
?
-
gene locus At3g51260
-
-
?
N6-PhEt-ATP-gamma-S + 5-methyltetrahydropteroyl-triglutamate-homocysteine methyltransferase
?
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i.e. EC 2.1.1.14, gene locus At517920
-
-
?
N6-PhEt-ATP-gamma-S + adenosine kinase 1
?
-
gene locus At3g09820
-
-
?
N6-PhEt-ATP-gamma-S + aldehyde dehydrogenase 7B4
?
-
gene locus At1g54100
-
-
?
N6-PhEt-ATP-gamma-S + annexin 1
?
-
gene locus At1g35720
-
-
?
N6-PhEt-ATP-gamma-S + aquaporin interactor
?
-
gene locus At4g38220
-
-
?
N6-PhEt-ATP-gamma-S + beta glucosidase 18
?
-
gene locus At1g52400
-
-
?
N6-PhEt-ATP-gamma-S + fructose-bisphosphate aldolase 2
?
-
gene locus At4g38970
-
-
?
N6-PhEt-ATP-gamma-S + glyceraldehyde-3-phosphate dehydrogenase C2
?
-
gene locus At1g13440
-
-
?
N6-PhEt-ATP-gamma-S + heat shock protein 70
?
-
gene locus At3g09440
-
-
?
N6-PhEt-ATP-gamma-S + isopropylmalate dehydrogenase 1
?
-
gene locus At5g14200
-
-
?
N6-PhEt-ATP-gamma-S + low expression of osmotically responsive genes 2
?
-
gene locus At2g36530
-
-
?
N6-PhEt-ATP-gamma-S + mitochondrial malate dehydrogenase 1
?
-
gene locus At1g53240
-
-
?
N6-PhEt-ATP-gamma-S + NAD(P)-binding Rossmann-fold superfamily protein
?
-
gene locus At5g19440
-
-
?
N6-PhEt-ATP-gamma-S + pfkB-like carbohydrate kinase family protein
?
N6-PhEt-ATP-gamma-S + proline iminopeptidase
?
-
gene locus At2g14260
-
-
?
N6-PhEt-ATP-gamma-S + retinoblastoma related 1 protein
?
-
-
-
-
?
N6-PhEt-ATP-gamma-S + Rubisco activase
?
-
gene locus At2g39730
-
-
?
N6-PhEt-ATP-gamma-S + Sku5 similar 1
?
-
gene locus At4g25240
-
-
?
N6-PhEt-ATP-gamma-S + TatD related DNase
?
-
gene locus At3g52390
-
-
?
N6-PhEt-ATP-gamma-S + thioglucoside glucohydrolase 1
?
-
gene locus At5g26000
-
-
?
additional information
?
-
ATP + RNA polymerase II
ADP + phosphorylated RNA polymerase II
-
-
-
?
ATP + RNA polymerase II
ADP + phosphorylated RNA polymerase II
phosphorylate the C-terminal domain of RNA polymerase II
-
-
?
N6-PhEt-ATP-gamma-S + pfkB-like carbohydrate kinase family protein
?
-
gene locus At2g31390
-
-
?
N6-PhEt-ATP-gamma-S + pfkB-like carbohydrate kinase family protein
?
-
gene locus At5g51830
-
-
?
additional information
?
-
enzyme may play a role in the regulation of plant growth and development
-
-
?
additional information
?
-
enzyme plays a central role in control of the mitotic cell cycle
-
-
?
additional information
?
-
enzyme plays a central role in control of the mitotic cell cycle
-
-
?
additional information
?
-
-
enzyme plays a central role in control of the mitotic cell cycle
-
-
?
additional information
?
-
key component of the eukaryotic cell cycle, which is required for G1 to S-phase transition and for entry into mitosis
-
-
?
additional information
?
-
-
key component of the eukaryotic cell cycle, which is required for G1 to S-phase transition and for entry into mitosis
-
-
?
additional information
?
-
-
plant-specific cyclin-dependent kinase CDKB1,1 and transcription factor E2Fa-DPa control the balance of mitotically dividing and endoreduplicating cells in Arabidopsis thaliana, CDKB1,1 is required to inhibit the endocycle and promote the ectopic cell divisions triggered by E2Fa-DPa, regulation model
-
-
?
additional information
?
-
-
the enzyme interacts with kinesin-like proteins KCA1 and KCA2 and is required for their activity and protein folding, and is influenced by the phosphorylation status of KCA1 and KCA2, the interaction plays a role in the cell cycle and cell division, overview
-
-
?
additional information
?
-
-
the plant-specific kinase CDKF,1 is involved in activating phosphorylation of CDK-activating kinases in Arabidopsis
-
-
?
additional information
?
-
-
the enzyme interacts with kinesin-like proteins KCA1 and KCA2, which possess N-terminal ATP and microtubule binding sites, as well as potential C-terminal CDK phosphorylation sites at positions 698, 849, and 853 in KCA1, and at positions 827 and 831 in KCA2, overview
-
-
?
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K33R
-
site-directed mutagenesis of CDK2, mutant is a substrate of the CAK1At complex and of the smaller CAK2At complex, overview
additional information
-
loss of function of the non-null cdkc2/CDKC1 RNAi and cyct15/CYCT14 RNAi double mutants leads to complete resistance to cauliflower mosaic virus
additional information
loss of function of the non-null cdkc2/CDKC1 RNAi and cyct15/CYCT14 RNAi double mutants leads to complete resistance to cauliflower mosaic virus
additional information
-
construction of transgenic plants expressing a negative dominant mutant of CDKB1,1 leading to stimulation to exit the mitosis, and of plants overexpressing the transcription factor E2Fa-DPa, these plants show two different cell-specific phenotypes: some divide ectopically and others are stimulated to endocycle, overexpression of the negative dominant CDKB1,1 mutant increases the endoreduplication phenotype, overview
additional information
loss-of-function mutation in the CDKA.1 gene, displays male gametophyte lethality, and produces bicellular pollen grains instead of the tricellular grains produced in wild-type plants
additional information
-
loss of function of the non-null cdkc2/CDKC1 RNAi and cyct15/CYCT14 RNAi double mutants leads to complete resistance to cauliflower mosaic virus
additional information
loss of function of the non-null cdkc2/CDKC1 RNAi and cyct15/CYCT14 RNAi double mutants leads to complete resistance to cauliflower mosaic virus
additional information
-
construction of transgenic plants with transformed dominant negative allele (CDKA;1.N146) of CDKA;1. CDKA;1.N146 expression level in Arabidopsis thaliana affects meristem organization, the number of plants with multiple meristems is much higher in homozygous versus hemizygous PSTM:CDKA;1.N146 populations. The hemizygous PSTM:CDKA;1.N146 plants lose the typical malformed leaf phenotype of the homozygous plants, corresponding with a decrease in the CDKA;1.N146 expression level, and the number of plants with two or more rosettes is significantly reduced, phenotypes, overview
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Inze, D.; Ferreira, P.; Hemerly, A.; Van Montagu, M.
Control of cell division in plants
Biochem. Soc. Trans.
20
80-84
1992
Arabidopsis thaliana (P24100)
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Identification of two cell-cycle-controlling cdc2 gene homologs in Arabidopsis thaliana
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The Arabidopsis functional homolog of the p34cdc2 protein kinase
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1991
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Sequence and analysis of chromosome 4 of the plant Arabidopsis thaliana
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402
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1999
Arabidopsis thaliana (P43294)
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Molecular cloning of two novel protein kinase genes from Arabidopsis thaliana
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1216
9-14
1993
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Sequence and analysis of chromosome 3 of the plant Arabidopsis thaliana
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408
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Boudolf, V.; Vlieghe, K.; Beemster, G.T.; Magyar, Z.; Torres Acosta, J.A.; Maes, S.; Van Der Schueren, E.; Inze, D.; De Veylder, L.
The plant-specific cyclin-dependent kinase CDKB1;1 and transcription factor E2Fa-DPa control the balance of mitotically dividing and endoreduplicating cells in Arabidopsis
Plant Cell
16
2683-2692
2004
Arabidopsis thaliana
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Shimotohno, A.; Umeda-Hara, C.; Bisova, K.; Uchimiya, H.; Umeda, M.
The plant-specific kinase CDKF;1 is involved in activating phosphorylation of cyclin-dependent kinase-activating kinases in Arabidopsis
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16
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2004
Arabidopsis thaliana
brenda
Vanstraelen, M.; Torres Acosta, J.A.; De Veylder, L.; Inze, D.; Geelen, D.
A plant-specific subclass of C-terminal kinesins contains a conserved a-type cyclin-dependent kinase site implicated in folding and dimerization
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135
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2004
Arabidopsis thaliana
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Phosphorylation of threonine 161 in plant cyclin-dependent kinase A is required for cell division by activation of its associated kinase
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52
435-448
2007
Nicotiana tabacum, Arabidopsis thaliana (P24100)
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Roles of Arabidopsis cyclin-dependent kinase C complexes in cauliflower mosaic virus infection, plant growth, and development
Plant Cell
19
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2007
Arabidopsis thaliana, Arabidopsis thaliana (Q8W4P1)
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A cyclin-dependent protein kinase, CDKC2, colocalizes with and modulates the distribution of spliceosomal components in Arabidopsis
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54
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2008
Arabidopsis thaliana (Q8W4P1)
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Functions, regulation and cellular localization of plant cyclin-dependent kinase inhibitors
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231
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2008
Arabidopsis thaliana
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Cyclin-dependent kinase activity maintains the shoot apical meristem cells in an undifferentiated state
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64
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2010
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Modulation of plant growth in vivo and identification of kinase substrates using an analog-sensitive variant of cyclin-dependent kinase A;1
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