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Collapse Statistics
241 human active and 13 inactive phosphatases in total;
194 phosphatases have substrate data;
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336 protein substrates;
83 non-protein substrates;
1215 dephosphorylation interactions;
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299 KEGG pathways;
876 Reactome pathways;
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last scientific update:
11 Mar, 2019
last maintenance update:
01 Sep, 2023

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CHEBI:17150

Name 2-phosphoglycolic acidC00988
Download: mol | sdf
Synonyms0(phosphonatooxy)acetate;
2-phosphoglycolate;
2-phosphoglycolic acid;
Phosphoglycolic acid;
Definition The O-phospho derivative of glycolic acid.
Molecular Weight
(Exact mass)
156.0313 (155.9824)
Molecular Formula C2H5O6P
SMILES OC(=O)COP(O)(O)=O
InChI InChI=1S/C2H5O6P/c3-2(4)1-8-9(5,6)7/h1H2,(H,3,4)(H2,5,6,7)
InChI Key ASCFNMCAHFUBCO-UHFFFAOYSA-N
Crosslinking annotations KEGG:C00988 | 3DMET:B00215 | ChEBI:17150 | ChEMBL:CHEMBL47181 | KNApSAcK:C00007561 | NIKKAJI:J631.157A | PDB-CCD:PGA | PubChem:4234 |

Pathway ID Pathway Name Pathway Description (KEGG)
map00630Glyoxylate and dicarboxylate metabolismNA
map01100Metabolic pathwaysNA
map01110Biosynthesis of secondary metabolitesNA
map01130Biosynthesis of antibioticsNA
map01200Carbon metabolismCarbon metabolism is the most basic aspect of life. This map presents an overall view of central carbon metabolism, where the number of carbons is shown for each compound denoted by a circle, excluding a cofactor (CoA, CoM, THF, or THMPT) that is replaced by an asterisk. The map contains carbon utilization pathways of glycolysis (map00010), pentose phosphate pathway (map00030), and citrate cycle (map00020), and six known carbon fixation pathways (map00710 and map00720) as well as some pathways of methane metabolism (map00680). The six carbon fixation pathways are: (1) reductive pentose phosphate cycle (Calvin cycle) in plants and cyanobacteria that perform oxygenic photosynthesis, (2) reductive citrate cycle in photosynthetic green sulfur bacteria and some chemolithoautotrophs, (3) 3-hydroxypropionate bi-cycle in photosynthetic green nonsulfur bacteria, two variants of 4-hydroxybutyrate pathways in Crenarchaeota called (4) hydroxypropionate-hydroxybutyrate cycle and (5) dicarboxylate-hydroxybutyrate cycle, and (6) reductive acetyl-CoA pathway in methanogenic bacteria.