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About
What is Reactome ?
News
Team
Scientific Advisory Board
Funding
Editorial Calendar
Release Calendar
Statistics
Our Logo
License Agreement
Privacy Notice
Disclaimer
Digital Preservation
Contact us
Content
Table of Contents
DOIs
Data Schema
Reactome Research Spotlight
ORCID Integration Project
COVID-19 Disease Pathways
Docs
Userguide
Pathway Browser
How do I search ?
Details Panel
Analysis Tools
Analysis Data
Analysis Gene Expression
Species Comparison
Tissue Distribution
Diseases
Cytomics
Review Status of Reactome Events
ReactomeFIViz
Developer's Zone
Graph Database
Analysis Service
Content Service
Pathways Overview
Pathway Diagrams
Icon Info
EHLD Specs & Guidelines
Icon Library Guidelines
Data Model
Curator Guide
Release Documentation
Computationally inferred events
FAQ
Linking to Us
Citing us
Tools
Pathway Browser
Analyse gene list
Analyse gene expression
Species Comparison
Tissue Distribution
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Content Service
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Contribute Pathway Knowledge
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Outreach
Events
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CIT [cytosol]
Stable Identifier
R-ALL-76190
Type
Chemical Compound [SimpleEntity]
Compartment
cytosol
Synonyms
Citrate, citric acid
Locations in the PathwayBrowser
for Species:
Homo sapiens
Bos taurus
Caenorhabditis elegans
Canis familiaris
Danio rerio
Dictyostelium discoideum
Drosophila melanogaster
Gallus gallus
Mus musculus
Plasmodium falciparum
Rattus norvegicus
Saccharomyces cerevisiae
Schizosaccharomyces pombe
Sus scrofa
Xenopus tropicalis
Expand all
Metabolism (Bos taurus)
Metabolism of carbohydrates and carbohydrate derivatives (Bos taurus)
Glucose metabolism (Bos taurus)
Glycolysis (Bos taurus)
PFK tetramer phosphorylates Fru(6)P (Bos taurus)
CIT [cytosol]
Metabolism of lipids (Bos taurus)
Fatty acid metabolism (Bos taurus)
Carnitine shuttle (Bos taurus)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Bos taurus)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Bos taurus)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Bos taurus)
ACLY tetramer transforms CIT to Ac-CoA (Bos taurus)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Bos taurus)
CIT [cytosol]
Metabolism of vitamins and cofactors (Bos taurus)
Metabolism of cofactors (Bos taurus)
NADPH regeneration (Bos taurus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Bos taurus)
CIT [cytosol]
Transport of small molecules (Bos taurus)
SLC-mediated transmembrane transport (Bos taurus)
SLC-mediated transport of organic anions (Bos taurus)
NACT co-transports trivalent citrate and a sodium ion (Bos taurus)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Bos taurus)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Bos taurus)
SLC25A1 exchanges CIT and MAL (Bos taurus)
CIT [cytosol]
Metabolism (Caenorhabditis elegans)
Metabolism of carbohydrates and carbohydrate derivatives (Caenorhabditis elegans)
Glucose metabolism (Caenorhabditis elegans)
Glycolysis (Caenorhabditis elegans)
PFK tetramer phosphorylates Fru(6)P (Caenorhabditis elegans)
CIT [cytosol]
Metabolism of lipids (Caenorhabditis elegans)
Fatty acid metabolism (Caenorhabditis elegans)
Carnitine shuttle (Caenorhabditis elegans)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Caenorhabditis elegans)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Caenorhabditis elegans)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Caenorhabditis elegans)
ACLY tetramer transforms CIT to Ac-CoA (Caenorhabditis elegans)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Caenorhabditis elegans)
CIT [cytosol]
Metabolism of vitamins and cofactors (Caenorhabditis elegans)
Metabolism of cofactors (Caenorhabditis elegans)
NADPH regeneration (Caenorhabditis elegans)
ACO1:4Fe-4S isomerises CIT to ISCIT (Caenorhabditis elegans)
CIT [cytosol]
Transport of small molecules (Caenorhabditis elegans)
SLC-mediated transmembrane transport (Caenorhabditis elegans)
SLC-mediated transport of organic anions (Caenorhabditis elegans)
NACT co-transports trivalent citrate and a sodium ion (Caenorhabditis elegans)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Caenorhabditis elegans)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Caenorhabditis elegans)
SLC25A1 exchanges CIT and MAL (Caenorhabditis elegans)
CIT [cytosol]
Metabolism (Canis familiaris)
Metabolism of carbohydrates and carbohydrate derivatives (Canis familiaris)
Glucose metabolism (Canis familiaris)
Glycolysis (Canis familiaris)
PFK tetramer phosphorylates Fru(6)P (Canis familiaris)
CIT [cytosol]
Metabolism of lipids (Canis familiaris)
Fatty acid metabolism (Canis familiaris)
Carnitine shuttle (Canis familiaris)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Canis familiaris)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Canis familiaris)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Canis familiaris)
ACLY tetramer transforms CIT to Ac-CoA (Canis familiaris)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Canis familiaris)
CIT [cytosol]
Metabolism of vitamins and cofactors (Canis familiaris)
Metabolism of cofactors (Canis familiaris)
NADPH regeneration (Canis familiaris)
ACO1:4Fe-4S isomerises CIT to ISCIT (Canis familiaris)
CIT [cytosol]
Transport of small molecules (Canis familiaris)
SLC-mediated transmembrane transport (Canis familiaris)
SLC-mediated transport of organic anions (Canis familiaris)
NACT co-transports trivalent citrate and a sodium ion (Canis familiaris)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Canis familiaris)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Canis familiaris)
SLC25A1 exchanges CIT and MAL (Canis familiaris)
CIT [cytosol]
Metabolism (Danio rerio)
Metabolism of carbohydrates and carbohydrate derivatives (Danio rerio)
Glucose metabolism (Danio rerio)
Glycolysis (Danio rerio)
PFK tetramer phosphorylates Fru(6)P (Danio rerio)
CIT [cytosol]
Metabolism of lipids (Danio rerio)
Fatty acid metabolism (Danio rerio)
Fatty acyl-CoA biosynthesis (Danio rerio)
ACLY tetramer transforms CIT to Ac-CoA (Danio rerio)
CIT [cytosol]
Metabolism of vitamins and cofactors (Danio rerio)
Metabolism of cofactors (Danio rerio)
NADPH regeneration (Danio rerio)
ACO1:4Fe-4S isomerises CIT to ISCIT (Danio rerio)
CIT [cytosol]
Transport of small molecules (Danio rerio)
SLC-mediated transmembrane transport (Danio rerio)
SLC-mediated transport of organic anions (Danio rerio)
NaDC1 co-transports dicarboxylic acids and a sodium ion (Danio rerio)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Danio rerio)
SLC25A1 exchanges CIT and MAL (Danio rerio)
CIT [cytosol]
Metabolism (Dictyostelium discoideum)
Metabolism of lipids (Dictyostelium discoideum)
Fatty acid metabolism (Dictyostelium discoideum)
Carnitine shuttle (Dictyostelium discoideum)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Dictyostelium discoideum)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Dictyostelium discoideum)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Dictyostelium discoideum)
ACLY tetramer transforms CIT to Ac-CoA (Dictyostelium discoideum)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Dictyostelium discoideum)
CIT [cytosol]
Metabolism of vitamins and cofactors (Dictyostelium discoideum)
Metabolism of cofactors (Dictyostelium discoideum)
NADPH regeneration (Dictyostelium discoideum)
ACO1:4Fe-4S isomerises CIT to ISCIT (Dictyostelium discoideum)
CIT [cytosol]
Metabolism (Drosophila melanogaster)
Metabolism of carbohydrates and carbohydrate derivatives (Drosophila melanogaster)
Glucose metabolism (Drosophila melanogaster)
Glycolysis (Drosophila melanogaster)
PFK tetramer phosphorylates Fru(6)P (Drosophila melanogaster)
CIT [cytosol]
Metabolism of lipids (Drosophila melanogaster)
Fatty acid metabolism (Drosophila melanogaster)
Carnitine shuttle (Drosophila melanogaster)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Drosophila melanogaster)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Drosophila melanogaster)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Drosophila melanogaster)
ACLY tetramer transforms CIT to Ac-CoA (Drosophila melanogaster)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Drosophila melanogaster)
CIT [cytosol]
Metabolism of vitamins and cofactors (Drosophila melanogaster)
Metabolism of cofactors (Drosophila melanogaster)
NADPH regeneration (Drosophila melanogaster)
ACO1:4Fe-4S isomerises CIT to ISCIT (Drosophila melanogaster)
CIT [cytosol]
Transport of small molecules (Drosophila melanogaster)
SLC-mediated transmembrane transport (Drosophila melanogaster)
SLC-mediated transport of organic anions (Drosophila melanogaster)
NACT co-transports trivalent citrate and a sodium ion (Drosophila melanogaster)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Drosophila melanogaster)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Drosophila melanogaster)
SLC25A1 exchanges CIT and MAL (Drosophila melanogaster)
CIT [cytosol]
Metabolism (Gallus gallus)
Metabolism of carbohydrates and carbohydrate derivatives (Gallus gallus)
Glucose metabolism (Gallus gallus)
Glycolysis (Gallus gallus)
PFK tetramer phosphorylates Fru(6)P (Gallus gallus)
CIT [cytosol]
Metabolism of lipids (Gallus gallus)
Fatty acid metabolism (Gallus gallus)
Carnitine shuttle (Gallus gallus)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Gallus gallus)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Gallus gallus)
ACLY tetramer transforms CIT to Ac-CoA (Gallus gallus)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Gallus gallus)
CIT [cytosol]
Metabolism of vitamins and cofactors (Gallus gallus)
Metabolism of cofactors (Gallus gallus)
NADPH regeneration (Gallus gallus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Gallus gallus)
CIT [cytosol]
Transport of small molecules (Gallus gallus)
SLC-mediated transmembrane transport (Gallus gallus)
SLC-mediated transport of organic anions (Gallus gallus)
NACT co-transports trivalent citrate and a sodium ion (Gallus gallus)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Gallus gallus)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Gallus gallus)
SLC25A1 exchanges CIT and MAL (Gallus gallus)
CIT [cytosol]
Metabolism (Homo sapiens)
Metabolism of carbohydrates and carbohydrate derivatives (Homo sapiens)
Glucose metabolism (Homo sapiens)
Glycolysis (Homo sapiens)
PFK tetramer phosphorylates Fru(6)P (Homo sapiens)
CIT [cytosol]
Metabolism of lipids (Homo sapiens)
Fatty acid metabolism (Homo sapiens)
Carnitine shuttle (Homo sapiens)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Homo sapiens)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Homo sapiens)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Homo sapiens)
ACLY tetramer transforms CIT to Ac-CoA (Homo sapiens)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Homo sapiens)
CIT [cytosol]
Metabolism of vitamins and cofactors (Homo sapiens)
Metabolism of cofactors (Homo sapiens)
NADPH regeneration (Homo sapiens)
ACO1:4Fe-4S isomerises CIT to ISCIT (Homo sapiens)
CIT [cytosol]
Sensory Perception (Homo sapiens)
Sensory perception of taste (Homo sapiens)
Sensory perception of sour taste (Homo sapiens)
Protonated weak acid translocates across the plasma membrane (Homo sapiens)
weak acid [cytosol]
CIT [cytosol]
Transport of small molecules (Homo sapiens)
SLC-mediated transmembrane transport (Homo sapiens)
SLC-mediated transport of organic anions (Homo sapiens)
NACT co-transports trivalent citrate and a sodium ion (Homo sapiens)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Homo sapiens)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Homo sapiens)
SLC25A1 exchanges CIT and MAL (Homo sapiens)
CIT [cytosol]
Metabolism (Mus musculus)
Metabolism of carbohydrates and carbohydrate derivatives (Mus musculus)
Glucose metabolism (Mus musculus)
Glycolysis (Mus musculus)
PFK tetramer phosphorylates Fru(6)P (Mus musculus)
CIT [cytosol]
Metabolism of lipids (Mus musculus)
Fatty acid metabolism (Mus musculus)
Carnitine shuttle (Mus musculus)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Mus musculus)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Mus musculus)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Mus musculus)
ACLY tetramer transforms CIT to Ac-CoA (Mus musculus)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Mus musculus)
CIT [cytosol]
Metabolism of vitamins and cofactors (Mus musculus)
Metabolism of cofactors (Mus musculus)
NADPH regeneration (Mus musculus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Mus musculus)
CIT [cytosol]
Transport of small molecules (Mus musculus)
SLC-mediated transmembrane transport (Mus musculus)
SLC-mediated transport of organic anions (Mus musculus)
NACT co-transports trivalent citrate and a sodium ion (Mus musculus)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Mus musculus)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Mus musculus)
SLC25A1 exchanges CIT and MAL (Mus musculus)
CIT [cytosol]
Metabolism (Plasmodium falciparum)
Metabolism of lipids (Plasmodium falciparum)
Fatty acid metabolism (Plasmodium falciparum)
Carnitine shuttle (Plasmodium falciparum)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Plasmodium falciparum)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Plasmodium falciparum)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Plasmodium falciparum)
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Plasmodium falciparum)
CIT [cytosol]
Metabolism of vitamins and cofactors (Plasmodium falciparum)
Metabolism of cofactors (Plasmodium falciparum)
NADPH regeneration (Plasmodium falciparum)
ACO1:4Fe-4S isomerises CIT to ISCIT (Plasmodium falciparum)
CIT [cytosol]
Metabolism (Rattus norvegicus)
Metabolism of carbohydrates and carbohydrate derivatives (Rattus norvegicus)
Glucose metabolism (Rattus norvegicus)
Glycolysis (Rattus norvegicus)
PFK tetramer phosphorylates Fru(6)P (Rattus norvegicus)
CIT [cytosol]
Metabolism of lipids (Rattus norvegicus)
Fatty acid metabolism (Rattus norvegicus)
Carnitine shuttle (Rattus norvegicus)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Rattus norvegicus)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Rattus norvegicus)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Rattus norvegicus)
ACLY tetramer transforms CIT to Ac-CoA (Rattus norvegicus)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Rattus norvegicus)
CIT [cytosol]
Metabolism of vitamins and cofactors (Rattus norvegicus)
Metabolism of cofactors (Rattus norvegicus)
NADPH regeneration (Rattus norvegicus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Rattus norvegicus)
CIT [cytosol]
Transport of small molecules (Rattus norvegicus)
SLC-mediated transmembrane transport (Rattus norvegicus)
SLC-mediated transport of organic anions (Rattus norvegicus)
NACT co-transports trivalent citrate and a sodium ion (Rattus norvegicus)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Rattus norvegicus)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Rattus norvegicus)
SLC25A1 exchanges CIT and MAL (Rattus norvegicus)
CIT [cytosol]
Metabolism (Saccharomyces cerevisiae)
Metabolism of carbohydrates and carbohydrate derivatives (Saccharomyces cerevisiae)
Glucose metabolism (Saccharomyces cerevisiae)
Glycolysis (Saccharomyces cerevisiae)
PFK tetramer phosphorylates Fru(6)P (Saccharomyces cerevisiae)
CIT [cytosol]
Metabolism of lipids (Saccharomyces cerevisiae)
Fatty acid metabolism (Saccharomyces cerevisiae)
Carnitine shuttle (Saccharomyces cerevisiae)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Saccharomyces cerevisiae)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Saccharomyces cerevisiae)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Saccharomyces cerevisiae)
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Saccharomyces cerevisiae)
CIT [cytosol]
Transport of small molecules (Saccharomyces cerevisiae)
SLC-mediated transmembrane transport (Saccharomyces cerevisiae)
SLC-mediated transport of organic anions (Saccharomyces cerevisiae)
Organic anion transport by SLC5/17/25 transporters (Saccharomyces cerevisiae)
SLC25A1 exchanges CIT and MAL (Saccharomyces cerevisiae)
CIT [cytosol]
Metabolism (Schizosaccharomyces pombe)
Metabolism of carbohydrates and carbohydrate derivatives (Schizosaccharomyces pombe)
Glucose metabolism (Schizosaccharomyces pombe)
Glycolysis (Schizosaccharomyces pombe)
PFK tetramer phosphorylates Fru(6)P (Schizosaccharomyces pombe)
CIT [cytosol]
Metabolism of lipids (Schizosaccharomyces pombe)
Fatty acid metabolism (Schizosaccharomyces pombe)
Carnitine shuttle (Schizosaccharomyces pombe)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Schizosaccharomyces pombe)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Schizosaccharomyces pombe)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Schizosaccharomyces pombe)
ACLY tetramer transforms CIT to Ac-CoA (Schizosaccharomyces pombe)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Schizosaccharomyces pombe)
CIT [cytosol]
Transport of small molecules (Schizosaccharomyces pombe)
SLC-mediated transmembrane transport (Schizosaccharomyces pombe)
SLC-mediated transport of organic anions (Schizosaccharomyces pombe)
Organic anion transport by SLC5/17/25 transporters (Schizosaccharomyces pombe)
SLC25A1 exchanges CIT and MAL (Schizosaccharomyces pombe)
CIT [cytosol]
Metabolism (Sus scrofa)
Metabolism of carbohydrates and carbohydrate derivatives (Sus scrofa)
Glucose metabolism (Sus scrofa)
Glycolysis (Sus scrofa)
PFK tetramer phosphorylates Fru(6)P (Sus scrofa)
CIT [cytosol]
Metabolism of lipids (Sus scrofa)
Fatty acid metabolism (Sus scrofa)
Carnitine shuttle (Sus scrofa)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Sus scrofa)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Sus scrofa)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Sus scrofa)
ACLY tetramer transforms CIT to Ac-CoA (Sus scrofa)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Sus scrofa)
CIT [cytosol]
Metabolism of vitamins and cofactors (Sus scrofa)
Metabolism of cofactors (Sus scrofa)
NADPH regeneration (Sus scrofa)
ACO1:4Fe-4S isomerises CIT to ISCIT (Sus scrofa)
CIT [cytosol]
Transport of small molecules (Sus scrofa)
SLC-mediated transmembrane transport (Sus scrofa)
SLC-mediated transport of organic anions (Sus scrofa)
NACT co-transports trivalent citrate and a sodium ion (Sus scrofa)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Sus scrofa)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Sus scrofa)
SLC25A1 exchanges CIT and MAL (Sus scrofa)
CIT [cytosol]
Metabolism (Xenopus tropicalis)
Metabolism of lipids (Xenopus tropicalis)
Fatty acid metabolism (Xenopus tropicalis)
Carnitine shuttle (Xenopus tropicalis)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Xenopus tropicalis)
CIT [cytosol]
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA (Xenopus tropicalis)
CIT [cytosol]
Fatty acyl-CoA biosynthesis (Xenopus tropicalis)
ACLY tetramer transforms CIT to Ac-CoA (Xenopus tropicalis)
CIT [cytosol]
Formation of Malonyl-CoA from Acetyl-CoA (liver) (Xenopus tropicalis)
CIT [cytosol]
Metabolism of vitamins and cofactors (Xenopus tropicalis)
Metabolism of cofactors (Xenopus tropicalis)
NADPH regeneration (Xenopus tropicalis)
ACO1:4Fe-4S isomerises CIT to ISCIT (Xenopus tropicalis)
CIT [cytosol]
Transport of small molecules (Xenopus tropicalis)
SLC-mediated transmembrane transport (Xenopus tropicalis)
SLC-mediated transport of organic anions (Xenopus tropicalis)
NACT co-transports trivalent citrate and a sodium ion (Xenopus tropicalis)
CIT [cytosol]
NaDC1 co-transports dicarboxylic acids and a sodium ion (Xenopus tropicalis)
Dicarboxylates transported by NaDC1 [cytosol]
CIT [cytosol]
Organic anion transport by SLC5/17/25 transporters (Xenopus tropicalis)
SLC25A1 exchanges CIT and MAL (Xenopus tropicalis)
CIT [cytosol]
External Reference Information
External Reference
citrate(3-) [ChEBI:16947]
Participates
as an input of
phosphoenolpyruvate [mitochondrial matrix] + citrate [cytosol] <=> phosphoenolpyruvate [cytosol] + citrate [mitochondrial matrix] (Gallus gallus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Homo sapiens)
ACO1:4Fe-4S isomerises CIT to ISCIT (Mus musculus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Rattus norvegicus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Canis familiaris)
ACO1:4Fe-4S isomerises CIT to ISCIT (Bos taurus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Sus scrofa)
ACO1:4Fe-4S isomerises CIT to ISCIT (Danio rerio)
ACO1:4Fe-4S isomerises CIT to ISCIT (Xenopus tropicalis)
ACO1:4Fe-4S isomerises CIT to ISCIT (Gallus gallus)
ACO1:4Fe-4S isomerises CIT to ISCIT (Drosophila melanogaster)
ACO1:4Fe-4S isomerises CIT to ISCIT (Caenorhabditis elegans)
ACO1:4Fe-4S isomerises CIT to ISCIT (Dictyostelium discoideum)
ACO1:4Fe-4S isomerises CIT to ISCIT (Plasmodium falciparum)
ACLY tetramer transforms CIT to Ac-CoA (Homo sapiens)
ACLY tetramer transforms CIT to Ac-CoA (Mus musculus)
ACLY tetramer transforms CIT to Ac-CoA (Rattus norvegicus)
ACLY tetramer transforms CIT to Ac-CoA (Canis familiaris)
ACLY tetramer transforms CIT to Ac-CoA (Bos taurus)
ACLY tetramer transforms CIT to Ac-CoA (Sus scrofa)
ACLY tetramer transforms CIT to Ac-CoA (Danio rerio)
ACLY tetramer transforms CIT to Ac-CoA (Xenopus tropicalis)
ACLY tetramer transforms CIT to Ac-CoA (Gallus gallus)
ACLY tetramer transforms CIT to Ac-CoA (Drosophila melanogaster)
ACLY tetramer transforms CIT to Ac-CoA (Caenorhabditis elegans)
ACLY tetramer transforms CIT to Ac-CoA (Dictyostelium discoideum)
ACLY tetramer transforms CIT to Ac-CoA (Schizosaccharomyces pombe)
as an output of
NACT co-transports trivalent citrate and a sodium ion (Caenorhabditis elegans)
NACT co-transports trivalent citrate and a sodium ion (Drosophila melanogaster)
NACT co-transports trivalent citrate and a sodium ion (Gallus gallus)
NACT co-transports trivalent citrate and a sodium ion (Xenopus tropicalis)
NACT co-transports trivalent citrate and a sodium ion (Sus scrofa)
SLC25A1 exchanges CIT and MAL (Homo sapiens)
SLC25A1 exchanges CIT and MAL (Mus musculus)
SLC25A1 exchanges CIT and MAL (Rattus norvegicus)
SLC25A1 exchanges CIT and MAL (Canis familiaris)
SLC25A1 exchanges CIT and MAL (Bos taurus)
SLC25A1 exchanges CIT and MAL (Sus scrofa)
SLC25A1 exchanges CIT and MAL (Danio rerio)
SLC25A1 exchanges CIT and MAL (Gallus gallus)
SLC25A1 exchanges CIT and MAL (Drosophila melanogaster)
SLC25A1 exchanges CIT and MAL (Caenorhabditis elegans)
SLC25A1 exchanges CIT and MAL (Saccharomyces cerevisiae)
SLC25A1 exchanges CIT and MAL (Xenopus tropicalis)
SLC25A1 exchanges CIT and MAL (Schizosaccharomyces pombe)
NACT co-transports trivalent citrate and a sodium ion (Homo sapiens)
NACT co-transports trivalent citrate and a sodium ion (Mus musculus)
NACT co-transports trivalent citrate and a sodium ion (Rattus norvegicus)
NACT co-transports trivalent citrate and a sodium ion (Canis familiaris)
NACT co-transports trivalent citrate and a sodium ion (Bos taurus)
as a member of
weak acid [cytosol]
Dicarboxylates transported by NaDC1 [cytosol]
This entity regulates
Negatively
PFK tetramer phosphorylates Fru(6)P
(Saccharomyces cerevisiae)
PFK tetramer phosphorylates Fru(6)P
(Schizosaccharomyces pombe)
PFK tetramer phosphorylates Fru(6)P
(Caenorhabditis elegans)
PFK tetramer phosphorylates Fru(6)P
(Drosophila melanogaster)
PFK tetramer phosphorylates Fru(6)P
(Gallus gallus)
PFK tetramer phosphorylates Fru(6)P
(Sus scrofa)
PFK tetramer phosphorylates Fru(6)P
(Bos taurus)
PFK tetramer phosphorylates Fru(6)P
(Canis familiaris)
PFK tetramer phosphorylates Fru(6)P
(Rattus norvegicus)
PFK tetramer phosphorylates Fru(6)P
(Mus musculus)
PFK tetramer phosphorylates Fru(6)P
(Homo sapiens)
PFK tetramer phosphorylates Fru(6)P
(Danio rerio)
Positively
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Sus scrofa)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Bos taurus)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Canis familiaris)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Sus scrofa)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Bos taurus)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Canis familiaris)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Homo sapiens)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Sus scrofa)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Bos taurus)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Canis familiaris)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Plasmodium falciparum)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Xenopus tropicalis)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Rattus norvegicus)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Homo sapiens)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Plasmodium falciparum)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Xenopus tropicalis)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Rattus norvegicus)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Plasmodium falciparum)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Xenopus tropicalis)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Rattus norvegicus)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Saccharomyces cerevisiae)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Schizosaccharomyces pombe)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Dictyostelium discoideum)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Caenorhabditis elegans)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Drosophila melanogaster)
Btn-ACACB:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Mus musculus)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Saccharomyces cerevisiae)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Schizosaccharomyces pombe)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Dictyostelium discoideum)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Caenorhabditis elegans)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Drosophila melanogaster)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Gallus gallus)
Btn-ACACA:2Mn2+ polymer carboxylates Ac-CoA to form Mal-CoA
(Mus musculus)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Saccharomyces cerevisiae)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Schizosaccharomyces pombe)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Dictyostelium discoideum)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Caenorhabditis elegans)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Drosophila melanogaster)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Gallus gallus)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Mus musculus)
Formation of Malonyl-CoA from Acetyl-CoA (liver)
(Homo sapiens)
Other forms of this molecule
CIT [extracellular region]
CIT [mitochondrial matrix]
Cross References
KNApSAcK
C00007619
AraCyc
CIT
CAS
77-92-9
COMPOUND
C00158
PubChem Compound
31348
ZINC
ZINC000000895081
KEGG Gene
C00158
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