Basic Information
Gene ID
Position
GWHASIS00001155:6941-7463 (-)
522bp
Gene Type
gene
Gene Description (Protein Product)
Phosphoenolpyruvate carboxykinase ATP
Organism
Also AS AT4G37870

Gene Structure

upstream:

Domain
Database EntryID E-Value Start end InterPro ID Description

Regulation&Interaction
Protein-protein interaction (PPI)
EVM0031316 The pyruvate dehydrogenase complex catalyzes the overall conversion of pyruvate to acetyl-CoA and CO(2)
EVM0026200 Pyruvate dehydrogenase E1 component subunit
EVM0026645 of pyruvate dehydrogenase complex
Regulatory gene
EVM0000322 G-box-binding factor
EVM0001287 transcription factor
EVM0001315 transcription factor that promotes early floral meristem identity in synergy with APETALA1; FRUITFULL and LEAFY. Is required subsequently for the transition of an inflorescence meristem into a floral meristem. Seems to be partially redundant to the function of APETALA1

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Annotation

Orthologous Group
Orthologous ID Species Number All hits in PereRegDB Hits of this species Orthologous Detail


Pathway
GO Term Description GO Category
GO:0002376 immune system process BP
GO:0003674 molecular_function MF
GO:0003824 catalytic activity MF
GO:0004611 phosphoenolpyruvate carboxykinase activity MF
GO:0004612 phosphoenolpyruvate carboxykinase (ATP) activity MF
GO:0005575 cellular_component CC
GO:0005622 intracellular anatomical structure CC
GO:0005623 obsolete cell CC
GO:0005634 nucleus CC
GO:0005730 nucleolus CC
GO:0005737 cytoplasm CC
GO:0005829 cytosol CC
GO:0005975 carbohydrate metabolic process BP
GO:0005996 monosaccharide metabolic process BP
GO:0006006 glucose metabolic process BP
GO:0006094 gluconeogenesis BP
GO:0006950 response to stress BP
GO:0006952 defense response BP
GO:0006955 immune response BP
GO:0007154 cell communication BP
GO:0008150 biological_process BP
GO:0008152 metabolic process BP
GO:0009058 biosynthetic process BP
GO:0009267 cellular response to starvation BP
GO:0009605 response to external stimulus BP
GO:0009607 response to biotic stimulus BP
GO:0009620 response to fungus BP
GO:0009814 defense response to other organism BP
GO:0009817 defense response to fungus BP
GO:0009987 cellular process BP
GO:0009991 response to extracellular stimulus BP
GO:0010035 response to inorganic substance BP
GO:0010038 response to metal ion BP
GO:0016020 membrane CC
GO:0016036 cellular response to phosphate starvation BP
GO:0016051 carbohydrate biosynthetic process BP
GO:0016829 lyase activity MF
GO:0016830 carbon-carbon lyase activity MF
GO:0016831 carboxy-lyase activity MF
GO:0019318 hexose metabolic process BP
GO:0019319 hexose biosynthetic process BP
GO:0031667 response to nutrient levels BP
GO:0031668 cellular response to extracellular stimulus BP
GO:0031669 cellular response to nutrient levels BP
GO:0031974 membrane-enclosed lumen CC
GO:0031981 nuclear lumen CC
GO:0033554 cellular response to stress BP
GO:0042221 response to chemical BP
GO:0042594 response to starvation BP
GO:0043207 response to external biotic stimulus BP
GO:0043226 organelle CC
GO:0043227 membrane-bounded organelle CC
GO:0043228 non-membrane-bounded organelle CC
GO:0043229 intracellular organelle CC
GO:0043231 intracellular membrane-bounded organelle CC
GO:0043232 intracellular non-membrane-bounded organelle CC
GO:0043233 organelle lumen CC
GO:0044238 primary metabolic process BP
GO:0044281 small molecule metabolic process BP
GO:0044283 small molecule biosynthetic process BP
GO:0044422 obsolete organelle part CC
GO:0044424 obsolete intracellular part CC
GO:0044428 obsolete nuclear part CC
GO:0044444 obsolete cytoplasmic part CC
GO:0044446 obsolete intracellular organelle part CC
GO:0044464 obsolete cell part CC
GO:0045087 innate immune response BP
GO:0046364 monosaccharide biosynthetic process BP
GO:0046686 response to cadmium ion BP
GO:0050832 defense response to fungus BP
GO:0050896 response to stimulus BP
GO:0051704 obsolete multi-organism process BP
GO:0051707 response to other organism BP
GO:0051716 cellular response to stimulus BP
GO:0070013 intracellular organelle lumen CC
GO:0071496 cellular response to external stimulus BP
GO:0071704 organic substance metabolic process BP
GO:0098542 defense response to other organism BP
GO:1901576 organic substance biosynthetic process BP
KEGG Term Name Description
map01110 Biosynthesis of secondary metabolites -
map01100 Metabolic pathways -
map00710 Carbon fixation in photosynthetic organisms -
map00620 Pyruvate metabolism -
map00020 Citrate cycle (TCA cycle) The citrate cycle (TCA cycle, Krebs cycle) is an important aerobic pathway for the final steps of the oxidation of carbohydrates and fatty acids. The cycle starts with acetyl-CoA, the activated form of acetate, derived from glycolysis and pyruvate oxidation for carbohydrates and from beta oxidation of fatty acids. The two-carbon acetyl group in acetyl-CoA is transferred to the four-carbon compound of oxaloacetate to form the six-carbon compound of citrate. In a series of reactions two carbons in citrate are oxidized to CO2 and the reaction pathway supplies NADH for use in the oxidative phosphorylation and other metabolic processes. The pathway also supplies important precursor metabolites including 2-oxoglutarate. At the end of the cycle the remaining four-carbon part is transformed back to oxaloacetate. According to the genome sequence data, many organisms seem to lack genes for the full cycle [MD:M00009], but contain genes for specific segments [MD:M00010 M00011].
map00010 Glycolysis / Gluconeogenesis Glycolysis is the process of converting glucose into pyruvate and generating small amounts of ATP (energy) and NADH (reducing power). It is a central pathway that produces important precursor metabolites: six-carbon compounds of glucose-6P and fructose-6P and three-carbon compounds of glycerone-P, glyceraldehyde-3P, glycerate-3P, phosphoenolpyruvate, and pyruvate [MD:M00001]. Acetyl-CoA, another important precursor metabolite, is produced by oxidative decarboxylation of pyruvate [MD:M00307]. When the enzyme genes of this pathway are examined in completely sequenced genomes, the reaction steps of three-carbon compounds from glycerone-P to pyruvate form a conserved core module [MD:M00002], which is found in almost all organisms and which often corresponds to operon structures in bacterial genomes. Gluconeogenesis is a synthesis pathway of glucose from noncarbohydrate precursors. It is essentially a reversal of glycolysis with minor variations of alternative paths [MD:M00003].