Drug General Information |
Drug ID |
D0V7AA
|
Former ID |
DNC011168
|
Drug Name |
CATECHIN
|
Drug Type |
Small molecular drug
|
Indication |
Discovery agent
|
Investigative |
[1]
|
Structure |
|
Download
2D MOL
3D MOL
|
Formula |
C15H14O6
|
Canonical SMILES |
C1C(C(OC2=CC(=CC(=C21)O)O)C3=CC(=C(C=C3)O)O)O
|
InChI |
1S/C15H14O6/c16-8-4-11(18)9-6-13(20)15(21-14(9)5-8)7-1-2-10(17)12(19)3-7/h1-5,13,15-20H,6H2
|
InChIKey |
PFTAWBLQPZVEMU-UHFFFAOYSA-N
|
PubChem Compound ID |
|
Target and Pathway |
Target(s) |
Carbonic anhydrase II |
Target Info |
Inhibitor |
[1]
|
Carbonic anhydrase XII |
Target Info |
Inhibitor |
[1]
|
Carbonic anhydrase VI |
Target Info |
Inhibitor |
[1]
|
Carbonic anhydrase IX |
Target Info |
Inhibitor |
[1]
|
Carbonic anhydrase XIV |
Target Info |
Inhibitor |
[1]
|
Carbonic anhydrase I |
Target Info |
Inhibitor |
[1]
|
Prostaglandin G/H synthase 1 |
Target Info |
Inhibitor |
[2]
|
Carbonic anhydrase |
Target Info |
Inhibitor |
[1]
|
Carbonic anhydrase IV |
Target Info |
Inhibitor |
[1]
|
BioCyc Pathway
|
C20 prostanoid biosynthesis
|
KEGG Pathway
|
Nitrogen metabolism
|
Proximal tubule bicarbonate reclamation
|
Collecting duct acid secretion
|
Gastric acid secretion
|
Pancreatic secretion
|
Bile secretionhsa00910:Nitrogen metabolismhsa00910:Nitrogen metabolismhsa00910:Nitrogen metabolismhsa00910:Nitrogen metabolismhsa00910:Nitrogen metabolismhsa00590:Arachidonic acid metabolism
|
Metabolic pathways
|
Platelet activation
|
Serotonergic synapsehsa00910:Nitrogen metabolism
|
NetPath Pathway
|
IL4 Signaling Pathway
|
EGFR1 Signaling PathwayNetPath_7:TGF_beta_Receptor Signaling PathwayNetPath_7:TGF_beta_Receptor Signaling Pathway
|
PANTHER Pathway
|
Inflammation mediated by chemokine and cytokine signaling pathway
|
Pathway Interaction Database
|
HIF-1-alpha transcription factor networkcmyb_pathway:C-MYB transcription factor network
|
PathWhiz Pathway
|
Gastric Acid ProductionPW000044:Arachidonic Acid Metabolism
|
Reactome
|
Erythrocytes take up carbon dioxide and release oxygen
|
Erythrocytes take up oxygen and release carbon dioxide
|
Reversible hydration of carbon dioxideR-HSA-1475029:Reversible hydration of carbon dioxideR-HSA-1475029:Reversible hydration of carbon dioxideR-HSA-1234158:Regulation of gene expression by Hypoxia-inducible Factor
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Reversible hydration of carbon dioxideR-HSA-1475029:Reversible hydration of carbon dioxideR-HSA-1237044:Erythrocytes take up carbon dioxide and release oxygen
|
Reversible hydration of carbon dioxideR-HSA-1237044:Erythrocytes take up carbon dioxide and release oxygen
|
Reversible hydration of carbon dioxide
|
WikiPathways
|
Reversible Hydration of Carbon Dioxide
|
Uptake of Carbon Dioxide and Release of Oxygen by Erythrocytes
|
Uptake of Oxygen and Release of Carbon Dioxide by ErythrocytesWP2770:Reversible Hydration of Carbon Dioxide
|
miR-targeted genes in muscle cell - TarBase
|
miR-targeted genes in leukocytes - TarBase
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miR-targeted genes in epithelium - TarBaseWP2770:Reversible Hydration of Carbon DioxideWP2877:Vitamin D Receptor Pathway
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Regulation of Hypoxia-inducible Factor (HIF) by OxygenWP2770:Reversible Hydration of Carbon DioxideWP2770:Reversible Hydration of Carbon Dioxide
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Uptake of Oxygen and Release of Carbon Dioxide by ErythrocytesWP98:Prostaglandin Synthesis and Regulation
|
Arachidonic acid metabolism
|
Phase 1 - Functionalization of compounds
|
Eicosanoid Synthesis
|
Selenium Micronutrient NetworkWP2770:Reversible Hydration of Carbon Dioxide
|
Uptake of Oxygen and Release of Carbon Dioxide by Erythrocytes
|
References |
REF 1 | Bioorg Med Chem Lett. 2010 Sep 1;20(17):5050-3. Epub 2010 Jul 13.Carbonic anhydrase inhibitors. Antioxidant polyphenols effectively inhibit mammalian isoforms I-XV. |
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REF 2 | J Nat Prod. 2004 Nov;67(11):1777-82.Mechanism-based inactivation of COX-1 by red wine m-hydroquinones: a structure-activity relationship study. |