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.
An azacycloalkane that is cyclohexane in which one of the carbons is replaced by a nitrogen. It is a metabolite of cadaverine, a polyamine found in the human intestine.
piperidine analog inhibits the reaction [ACHE protein promotes the reaction [APP protein binds to APP protein]] piperidine analog results in decreased activity of ACHE protein
piperidine analog inhibits the reaction [ACHE protein promotes the reaction [APP protein binds to APP protein]]; piperidine analog inhibits the reaction [APP protein binds to APP protein]
piperidine analog results in decreased expression of IL2 mRNA piperidine inhibits the reaction [Cadmium Chloride results in decreased secretion of IL2 protein]
6-Cyano-7-nitroquinoxaline-2,3-dione inhibits the reaction [alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid inhibits the reaction [Phencyclidine results in increased activity of CASP3 protein]]; alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid inhibits the reaction [Phencyclidine results in increased activity of CASP3 protein]; Cadmium Chloride inhibits the reaction [alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid inhibits the reaction [Phencyclidine results in increased activity of CASP3 protein]]; Nifedipine inhibits the reaction [alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid inhibits the reaction [Phencyclidine results in increased activity of CASP3 protein]]; omega-agatoxin-Aa4b inhibits the reaction [alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid inhibits the reaction [Phencyclidine results in increased activity of CASP3 protein]]; staurosporine aglycone inhibits the reaction [alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid inhibits the reaction [Phencyclidine results in increased activity of CASP3 protein]]
acetovanillone inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in increased activity of CYBA protein]]; ginsenoside Re inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in increased activity of CYBA protein]]; ginsenoside Re inhibits the reaction [Phencyclidine results in increased activity of CYBA protein]; GPX1 protein affects the reaction [Phencyclidine results in increased activity of CYBA protein]
Phencyclidine analog results in decreased activity of CYP2B6 protein; Phencyclidine results in decreased activity of CYP2B6 protein CYP2B6 protein affects the oxidation of Phencyclidine CYP2B6 protein affects the metabolism of Phencyclidine analog
[DDO protein affects the susceptibility to Phencyclidine] which affects the expression of DLG4 mRNA; [DDO protein affects the susceptibility to Phencyclidine] which affects the expression of HOMER1 mRNA; DDO protein affects the reaction [Phencyclidine results in decreased expression of HOMER1 mRNA]; DDO protein affects the reaction [Phencyclidine results in increased expression of DLG4 mRNA]
[DDO protein affects the susceptibility to Phencyclidine] which affects the expression of DLG4 mRNA; DDO protein affects the reaction [Phencyclidine results in increased expression of DLG4 mRNA]
Phencyclidine results in decreased expression of DRD1 mRNA; Phencyclidine results in decreased expression of DRD1 protein NTSR1 gene affects the reaction [Phencyclidine results in decreased expression of DRD1 protein]
Phencyclidine results in decreased expression of DRD2 mRNA; Phencyclidine results in decreased expression of DRD2 protein Phencyclidine binds to Drd2 protein
[Dextroamphetamine co-treated with Phencyclidine] promotes the reaction [FOS protein binds to FOS promoter]; [Dextroamphetamine co-treated with Phencyclidine] promotes the reaction [SRF protein binds to FOS promoter]; [Dextroamphetamine co-treated with Phencyclidine] results in increased expression of FOS protein; [Phencyclidine co-treated with Dextroamphetamine] results in increased expression of FOS protein; Phencyclidine promotes the reaction [FOS protein binds to FOS promoter]; Phencyclidine promotes the reaction [SRF protein binds to FOS promoter] Phencyclidine results in increased expression of FOS protein
[Phencyclidine co-treated with Dextroamphetamine] results in increased expression of FOSB protein Phencyclidine results in increased expression of FOSB protein
acetovanillone inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine affects the localization of NCF1 protein]]; acetovanillone inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in decreased activity of SOD2 protein]]; acetovanillone inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in increased activity of CYBA protein]]; acetovanillone inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in increased activity of SOD1 protein]]; ginsenoside Re inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine affects the localization of NCF1 protein]]; ginsenoside Re inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in decreased activity of SOD2 protein]]; ginsenoside Re inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in increased activity of CYBA protein]]; ginsenoside Re inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in increased activity of SOD1 protein]]; GPX1 protein affects the reaction [Phencyclidine affects the localization of NCF1 protein]; GPX1 protein affects the reaction [Phencyclidine results in decreased activity of SOD2 protein]; GPX1 protein affects the reaction [Phencyclidine results in increased activity of CYBA protein]; GPX1 protein affects the reaction [Phencyclidine results in increased activity of SOD1 protein]
Phencyclidine results in decreased expression of GRIN1 mRNA; Phencyclidine results in decreased expression of GRIN1 protein [Phencyclidine co-treated with Dronabinol] results in decreased expression of GRIN1 protein
Phencyclidine results in increased expression of HMOX1 mRNA; Phencyclidine results in increased expression of HMOX1 protein 1,3-dimethylthiourea inhibits the reaction [Phencyclidine results in increased expression of HMOX1 protein]
[DDO protein affects the susceptibility to Phencyclidine] which affects the expression of HOMER1 mRNA; DDO protein affects the reaction [Phencyclidine results in decreased expression of HOMER1 mRNA]
[Phencyclidine co-treated with Haloperidol] affects the activity of HTR2A protein; Clozapine promotes the reaction [Phencyclidine results in decreased activity of HTR2A protein]
Phencyclidine affects the localization of NCF1 protein acetovanillone inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine affects the localization of NCF1 protein]]; ginsenoside Re inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine affects the localization of NCF1 protein]]; ginsenoside Re inhibits the reaction [Phencyclidine affects the localization of NCF1 protein]; GPX1 protein affects the reaction [Phencyclidine affects the localization of NCF1 protein]
Clozapine inhibits the reaction [Phencyclidine results in decreased expression of PVALB mRNA]; Haloperidol inhibits the reaction [Phencyclidine results in decreased expression of PVALB mRNA]
Phencyclidine results in increased activity of SOD1 protein acetovanillone inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in increased activity of SOD1 protein]]; ginsenoside Re inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in increased activity of SOD1 protein]]; GPX1 protein affects the reaction [Phencyclidine results in increased activity of SOD1 protein]
Phencyclidine results in decreased activity of SOD2 protein acetovanillone inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in decreased activity of SOD2 protein]]; ginsenoside Re inhibits the reaction [GPX1 protein affects the reaction [Phencyclidine results in decreased activity of SOD2 protein]]; GPX1 protein affects the reaction [Phencyclidine results in decreased activity of SOD2 protein]
[Dextroamphetamine co-treated with Phencyclidine] promotes the reaction [SRF protein binds to FOS promoter]; Phencyclidine promotes the reaction [SRF protein binds to FOS promoter]
Phencyclidine inhibits the reaction [Methamphetamine results in decreased activity of TH protein] Phencyclidine results in increased expression of TH mRNA