Basic Information
Gene ID
Ciclev10032537m.g.v1.0
Position
scaffold_4:102164-107421 (+)
5257bp
Gene Type
gene
Gene Description (Protein Product)
triosephosphate isomerase
Organism
Also AS AT3G55440CICLE_v10032537mg

Gene Structure

upstream:

Domain
Database EntryID E-Value Start end InterPro ID Description

Regulation&Interaction
Protein-protein interaction (PPI)
Ciclev10033603m.g.v1.0 Transketolase; thiamine diphosphate binding domain
Ciclev10033567m.g.v1.0 Phosphorylase is an important allosteric enzyme in carbohydrate metabolism. Enzymes from different sources differ in their regulatory mechanisms and in their natural substrates. However; all known phosphorylases share catalytic and structural properties
Ciclev10033600m.g.v1.0 Core subunit of the mitochondrial membrane respiratory chain NADH dehydrogenase (Complex I) that is believed to belong to the minimal assembly required for catalysis. Complex I functions in the transfer of electrons from NADH to the respiratory chain
Regulatory gene
Ciclev10000225m.g.v1.0 B3 domain-containing
Ciclev10000881m.g.v1.0 B3 domain-containing protein
Ciclev10001063m.g.v1.0 B3 domain-containing protein

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Annotation

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


Pathway
KEGG Term Name Description
map01110 Biosynthesis of secondary metabolites -
map01100 Metabolic pathways -
map00710 Carbon fixation in photosynthetic organisms -
map00562 Inositol phosphate metabolism -
map00051 Fructose and mannose metabolism -
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].