The Chemical Entities of Biological Interest (ChEBI) ontology is downloaded weekly from EMBL-EBI at http://www.ebi.ac.uk/chebi/. The data is made available under the Creative Commons License (CC BY 3.0, http://creativecommons.org/licenses/by/3.0/). For more information see: Degtyarenko et al. (2008) ChEBI: a database and ontology for chemical entities of biological interest. Nucleic Acids Res. 36, D344–D350.
Carnitine results in decreased expression of BAX protein 2-(4-morpholinyl)-8-phenyl-4H-1-benzopyran-4-one inhibits the reaction [Carnitine results in decreased expression of BAX protein]; Carnitine inhibits the reaction [Atrazine results in increased expression of BAX mRNA]; Carnitine inhibits the reaction [Methotrexate results in increased expression of BAX protein]
Aluminum inhibits the reaction [BBOX1 protein results in increased chemical synthesis of Carnitine]; Hydrogen Peroxide inhibits the reaction [BBOX1 protein results in increased chemical synthesis of Carnitine]; Ketoglutaric Acids inhibits the reaction [Aluminum inhibits the reaction [BBOX1 protein results in increased chemical synthesis of Carnitine]]; Ketoglutaric Acids inhibits the reaction [Hydrogen Peroxide inhibits the reaction [BBOX1 protein results in increased chemical synthesis of Carnitine]]
2-(4-morpholinyl)-8-phenyl-4H-1-benzopyran-4-one inhibits the reaction [Carnitine results in increased phosphorylation of BCL2 protein]; Carnitine inhibits the reaction [Atrazine results in decreased expression of BCL2 mRNA]; Carnitine inhibits the reaction [Ifosfamide results in decreased expression of BCL2 mRNA]; Carnitine inhibits the reaction [Methotrexate results in decreased expression of BCL2 protein]
Carnitine inhibits the reaction [Atrazine results in increased expression of CASP3 mRNA]; Carnitine inhibits the reaction [Gentamicins results in increased cleavage of CASP3 protein]; Carnitine inhibits the reaction [Ifosfamide results in increased expression of CASP3 mRNA]; Carnitine inhibits the reaction [Iohexol promotes the reaction [Glycerol results in increased expression of CASP3 mRNA]]; Carnitine inhibits the reaction [Methotrexate results in increased expression of CASP3 protein] Carnitine results in increased expression of CASP3 protein Carnitine inhibits the reaction [quinone results in increased activity of CASP3 protein]
Carnitine inhibits the reaction [Ifosfamide results in increased expression of CASP9 mRNA] Carnitine inhibits the reaction [quinone results in increased activity of CASP9 protein]
Carnitine inhibits the reaction [Diethylnitrosamine results in decreased activity of CAT protein]; Carnitine inhibits the reaction [Doxorubicin results in decreased activity of CAT protein]; Carnitine inhibits the reaction [Ifosfamide results in decreased expression of CAT mRNA]
Carnitine inhibits the reaction [perfluorooctane sulfonic acid results in increased expression of COL1A1 mRNA]; Carnitine inhibits the reaction [Sunitinib results in increased expression of COL1A1 mRNA]
[COL2A1 protein co-treated with Freund's Adjuvant] affects the abundance of Carnitine; [geniposide co-treated with phellodendrine co-treated with magnoflorine co-treated with Chlorogenic Acid co-treated with crocin co-treated with Flavonoids co-treated with Berberine Alkaloids] inhibits the reaction [[COL2A1 protein co-treated with Freund's Adjuvant] results in increased abundance of Carnitine]; Dexamethasone inhibits the reaction [[COL2A1 protein co-treated with Freund's Adjuvant] results in increased abundance of Carnitine]; huang-lien-chieh-tu-tang inhibits the reaction [[COL2A1 protein co-treated with Freund's Adjuvant] results in increased abundance of Carnitine]
valproyl-coenzyme A inhibits the reaction [CPT1A protein results in increased metabolism of Carnitine] [Doxorubicin co-treated with Carnitine] results in increased expression of CPT1A mRNA; [Genistein co-treated with Carnitine] results in increased expression of CPT1A protein; Carnitine inhibits the reaction [quinone results in decreased expression of CPT1A protein]
Carnitine promotes the reaction [[Bezafibrate results in increased activity of CPT2 protein] which results in increased abundance of Adenosine Triphosphate] Carnitine results in increased expression of CPT2 protein
Carnitine inhibits the reaction [Sunitinib results in increased expression of CYBB mRNA]; Carnitine inhibits the reaction [Sunitinib results in increased expression of CYBB protein]
Carnitine inhibits the reaction [carbendazim results in decreased expression of FABP9 mRNA]; Carnitine inhibits the reaction [carbendazim results in decreased expression of FABP9 protein]
Carnitine inhibits the reaction [Gentamicins results in increased expression of HRK mRNA]; Carnitine inhibits the reaction [Gentamicins results in increased expression of HRK protein]
Carnitine inhibits the reaction [carbendazim results in decreased expression of IL10 protein]; Carnitine inhibits the reaction [Sunitinib results in decreased expression of IL10 mRNA]
Carnitine inhibits the reaction [Iohexol promotes the reaction [Glycerol results in increased expression of IL1B mRNA]]; Carnitine inhibits the reaction [sunitinib results in increased expression of IL1B mRNA] Carnitine results in increased expression of IL1B protein
Carnitine inhibits the reaction [carbendazim results in increased expression of IL6 protein]; Carnitine inhibits the reaction [Methotrexate results in increased expression of IL6 protein]; Carnitine inhibits the reaction [Sunitinib results in increased expression of IL6 mRNA]
INS1 protein results in decreased uptake of Carnitine Carnitine inhibits the reaction [[Dietary Fats co-treated with Fructose] results in increased secretion of INS1 protein]
[Carboplatin co-treated with Carnitine deficiency] results in increased expression of MPO protein; Acetaminophen promotes the reaction [Carnitine deficiency results in increased activity of MPO protein]
Carnitine inhibits the reaction [carbendazim results in increased expression of NOS2 protein]; Carnitine inhibits the reaction [Ifosfamide results in increased expression of NOS2 mRNA]
[pirinixic acid results in increased activity of PPARA protein] promotes the reaction [SLC22A21 protein results in increased uptake of Carnitine]; PPARA protein promotes the reaction [Carnitine results in decreased susceptibility to Gentamicins] Carnitine results in increased expression of PPARA protein Carnitine results in increased activity of PPARA protein
Carnitine results in increased expression of PPARG protein Carnitine inhibits the reaction [[Dietary Fats co-treated with Fructose] results in decreased expression of PPARG protein]
Carnitine results in increased expression of PTGIS mRNA PTGIS protein results in increased susceptibility to Carnitine [Carnitine results in increased expression of PTGIS mRNA] which results in increased chemical synthesis of 6-Ketoprostaglandin F1 alpha
[Doxorubicin co-treated with Carnitine] results in increased expression of SLC22A5 mRNA; Amiodarone inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Atorvastatin inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Betaine inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Carnitine inhibits the reaction [SLC22A5 protein results in increased abundance of Doxorubicin]; Carnitine inhibits the reaction [SLC22A5 protein results in increased transport of pivaloylcarnitine]; Choline inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Clozapine inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; grepafloxacin affects the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Ipratropium inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Lidocaine inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Nifedipine inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Ofloxacin inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Olanzapine inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine analog]; pivaloylcarnitine inhibits the reaction [SLC22A5 protein results in increased transport of Carnitine]; Propranolol inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Quetiapine Fumarate inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Spironolactone inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; talinolol inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; ziprasidone inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine] Carnitine affects the expression of SLC22A5 protein Carnitine inhibits the reaction [SLC22A5 protein results in increased abundance of and results in increased localization of Doxorubicin] Carnitine results in decreased expression of SLC22A5 mRNA; Carnitine results in decreased expression of SLC22A5 protein 1-Methyl-4-phenylpyridinium inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Carnitine inhibits the reaction [Cyclophosphamide results in decreased expression of SLC22A5 mRNA]; Carnitine inhibits the reaction [Cyclophosphamide results in decreased expression of SLC22A5 protein]; Carnitine inhibits the reaction [Doxorubicin results in decreased expression of SLC22A5 mRNA]; Carnitine inhibits the reaction [SLC22A5 protein results in increased uptake of Tetraethylammonium]; Dithioerythritol inhibits the reaction [Omeprazole inhibits the reaction [SLC22A5 protein results in increased transport of Carnitine]]; Ofloxacin inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine]; Omeprazole inhibits the reaction [SLC22A5 protein results in increased transport of Carnitine]; Tetraethylammonium inhibits the reaction [SLC22A5 protein results in increased uptake of Carnitine] Carnitine deficiency results in increased expression of SLC22A5 mRNA SLC22A5 protein results in increased uptake of Carnitine; SLC22A5 protein results in increased uptake of Carnitine analog SLC22A5 protein affects the uptake of Carnitine Carnitine binds to SLC22A5 protein
Ampicillin inhibits the reaction [SLC25A20 protein results in increased transport of Carnitine]; Carnitine inhibits the reaction [Hydrogen Peroxide results in decreased activity of SLC25A20 protein]; Cefazolin inhibits the reaction [SLC25A20 protein results in increased transport of Carnitine]; Cefonicid inhibits the reaction [SLC25A20 protein results in increased transport of Carnitine]; Cephalothin inhibits the reaction [SLC25A20 protein results in increased transport of Carnitine]; Piperacillin inhibits the reaction [SLC25A20 protein results in increased transport of Carnitine]
Carnitine results in increased expression of SLC2A4 protein Carnitine inhibits the reaction [[Dietary Fats co-treated with Fructose] results in decreased expression of SLC2A4 protein]
Carnitine inhibits the reaction [carbendazim results in decreased expression of STAR mRNA]; Carnitine inhibits the reaction [carbendazim results in decreased expression of STAR protein]
Carnitine inhibits the reaction [Iohexol promotes the reaction [Glycerol results in increased expression of TGFB1 mRNA]]; Carnitine inhibits the reaction [perfluorooctane sulfonic acid results in increased expression of TGFB1 mRNA]; Carnitine inhibits the reaction [sunitinib results in increased expression of TGFB1 mRNA]
Carnitine deficiency results in increased expression of TNF mRNA [Carboplatin co-treated with Carnitine deficiency] results in increased expression of TNF protein; Acetaminophen promotes the reaction [Carnitine deficiency results in increased expression of TNF mRNA]; Carnitine inhibits the reaction [carbendazim results in increased expression of TNF protein]; Carnitine inhibits the reaction [Iohexol promotes the reaction [Glycerol results in increased expression of TNF mRNA]]; Carnitine inhibits the reaction [Iohexol promotes the reaction [Glycerol results in increased expression of TNF protein]]; Carnitine inhibits the reaction [Methotrexate results in increased expression of TNF protein] Carnitine results in decreased expression of TNF protein
[2-(3-(1,3-dicarboxypropyl)ureido)pentanedioic acid binds to Aminocaproic Acid binds to 1-(1,3-carboxypropyl)-4,7-carboxymethyl-1,4,7-triazacyclononane binds to Valerates binds to bombesin (7-14) binds to Copper] inhibits the reaction [isospaglumic acid binds to FOLH1 protein]
[2-(3-(1,3-dicarboxypropyl)ureido)pentanedioic acid binds to Aminocaproic Acid binds to 1-(1,3-carboxypropyl)-4,7-carboxymethyl-1,4,7-triazacyclononane binds to Valerates binds to bombesin (7-14) binds to Copper] inhibits the reaction [bombesin, Tyr(4)- binds to GRPR protein]
Aminocaproic Acid inhibits the reaction [PLG protein results in increased phosphorylation of MAPK1 protein]; Aminocaproic Acid inhibits the reaction [PLG protein results in increased phosphorylation of MAPK3 protein]
pivaloylcarnitine binds to SLC22A5 protein SLC22A5 protein results in increased uptake of pivaloylcarnitine Carnitine inhibits the reaction [SLC22A5 protein results in increased transport of pivaloylcarnitine]; pivaloylcarnitine inhibits the reaction [SLC22A5 protein results in increased transport of Carnitine]
L-carnitine increases expression of Cpt1a mRNA and protein in rat heart L-carnitine inhibits the reaction [sunitinib decreases expression of Cpt1a mRNA and protein in rat heart]
L-carnitine increases expression of Mlycd protein in rat heart L-carnitine inhibits the reaction [sunitinib increases expression of Mlycd protein in rat heart]
L-carnitine increases expression of Ampka2 protein in rat serum and heart L-carnitine inhibits the reaction [sunitinib decreases expression of Ampka2 protein in rat serum and heart]
Acetylcarnitine inhibits the reaction [Dexamethasone results in decreased activity of ACHE protein]; Acetylcarnitine inhibits the reaction [Dexamethasone results in increased activity of ACHE protein]
Acetylcarnitine inhibits the reaction [sodium arsenite results in increased activity of CASP3 protein]; Acetylcarnitine inhibits the reaction [Sodium Selenite results in increased expression of CASP3 mRNA]
Acetylcarnitine inhibits the reaction [sodium arsenite results in decreased activity of CAT protein]; Acetylcarnitine inhibits the reaction [Sodium Selenite results in decreased expression of CAT mRNA]
IDH2 protein mutant form results in increased abundance of Acetylcarnitine Triazines inhibits the reaction [IDH2 protein mutant form results in increased abundance of Acetylcarnitine]
Acetylcarnitine results in increased expression of PPARGC1A protein [Acetylcarnitine co-treated with Thioctic Acid] results in increased expression of PPARGC1A protein
[Acetylcarnitine co-treated with Thioctic Acid] inhibits the reaction [Rotenone results in increased expression of SNCA protein]; Acetylcarnitine inhibits the reaction [Rotenone results in increased expression of SNCA protein]
APP protein mutant form results in increased abundance of propionylcarnitine PF-06840003 inhibits the reaction [APP protein mutant form results in increased abundance of propionylcarnitine] [APP protein mutant form co-treated with PSEN1 protein mutant form co-treated with PF-06840003] results in decreased abundance of propionylcarnitine
MAPT protein mutant form results in decreased abundance of propionylcarnitine PF-06840003 inhibits the reaction [MAPT protein mutant form results in decreased abundance of propionylcarnitine]
sodium propionate promotes the reaction [biochanin A results in increased expression of CYP1B1 mRNA]; sodium propionate promotes the reaction [Tetrachlorodibenzodioxin results in increased expression of CYP1B1 mRNA]
sodium propionate inhibits the reaction [Ethanol results in increased expression of HDAC2 mRNA]; sodium propionate inhibits the reaction [Ethanol results in increased expression of HDAC2 protein]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of IFNG mRNA]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of IKBKB mRNA]; [Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of IKBKB protein]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of IL6 mRNA]
[sodium propionate co-treated with Cadmium] results in increased expression of MT1A mRNA; [sodium propionate co-treated with Dexamethasone] results in increased expression of MT1A mRNA sodium propionate results in increased expression of MT1A mRNA
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of MYD88 mRNA]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in decreased expression of NFKBIA protein]
sodium propionate inhibits the reaction [Ethanol results in increased expression of NOX1 mRNA]; sodium propionate inhibits the reaction [TNF protein affects the acetylation of NOX1 promoter]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of and results in increased phosphorylation of RELA protein]; [Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of RELA mRNA]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of TGFB1 mRNA]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of TLR2 mRNA]; [Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of TLR2 protein]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of TLR4 mRNA]; [Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of TLR4 protein]
[Sodium Acetate co-treated with Butyric Acid co-treated with sodium propionate] inhibits the reaction [Fluorides results in increased expression of TNF mRNA]; sodium propionate inhibits the reaction [TNF protein affects the acetylation of NOX1 promoter]
Triarachidonin results in decreased expression of SCD1 mRNA Clofibrate inhibits the reaction [Triarachidonin results in decreased expression of SCD1 mRNA]