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.
chloroacetic acid results in decreased expression of BCL2 mRNA SB 203580 inhibits the reaction [chloroacetic acid results in decreased expression of BCL2 mRNA]
Acetylcysteine inhibits the reaction [chloroacetic acid results in increased cleavage of and results in increased activity of CASP12 protein]; chloroacetic acid results in increased cleavage of and results in increased activity of CASP12 protein; HSP90B1 protein promotes the reaction [chloroacetic acid results in increased cleavage of and results in increased activity of CASP12 protein]; HSPA5 protein promotes the reaction [chloroacetic acid results in increased cleavage of and results in increased activity of CASP12 protein]
chloroacetic acid results in increased cleavage of and results in increased activity of CASP3 protein; HSP90B1 protein promotes the reaction [chloroacetic acid results in increased cleavage of CASP3 protein]; HSPA5 protein promotes the reaction [chloroacetic acid results in increased cleavage of CASP3 protein]; SB 203580 inhibits the reaction [chloroacetic acid results in increased activity of CASP3 protein]
chloroacetic acid results in increased cleavage of and results in increased activity of CASP7 protein; SB 203580 inhibits the reaction [chloroacetic acid results in increased activity of CASP7 protein]
Acetylcysteine inhibits the reaction [chloroacetic acid results in increased expression of DDIT3 protein] chloroacetic acid results in increased expression of DDIT3 mRNA; chloroacetic acid results in increased expression of DDIT3 protein
chloroacetic acid results in increased phosphorylation of EIF2A protein Acetylcysteine inhibits the reaction [chloroacetic acid results in increased phosphorylation of EIF2A protein]
chloroacetic acid results in decreased expression of GK mRNA [ethylene dichloride metabolite results in increased abundance of chloroacetic acid] which results in decreased expression of GK mRNA
Acetylcysteine inhibits the reaction [chloroacetic acid results in increased expression of HSP90B1 protein]; HSP90B1 protein promotes the reaction [chloroacetic acid results in increased cleavage of and results in increased activity of CASP12 protein]; HSP90B1 protein promotes the reaction [chloroacetic acid results in increased cleavage of CASP3 protein] chloroacetic acid results in increased expression of HSP90B1 mRNA; chloroacetic acid results in increased expression of HSP90B1 protein
Acetylcysteine inhibits the reaction [chloroacetic acid results in increased expression of HSPA5 protein]; HSPA5 protein promotes the reaction [chloroacetic acid results in increased cleavage of and results in increased activity of CASP12 protein]; HSPA5 protein promotes the reaction [chloroacetic acid results in increased cleavage of CASP3 protein] chloroacetic acid results in increased expression of HSPA5 mRNA; chloroacetic acid results in increased expression of HSPA5 protein
[ethylene dichloride metabolite results in increased abundance of chloroacetic acid] which results in increased expression of MIR451A mRNA chloroacetic acid results in increased expression of MIR451A mRNA
Acetylcysteine inhibits the reaction [chloroacetic acid results in increased expression of XBP1 protein alternative form] chloroacetic acid results in increased expression of XBP1 mRNA alternative form; chloroacetic acid results in increased expression of XBP1 protein alternative form
[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of GRK1 mRNA; Octreotide affects the reaction [SSTR1 protein affects the reaction [[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of GRK1 mRNA]]; Octreotide inhibits the reaction [[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of GRK1 mRNA]; SSTR1 protein affects the reaction [[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of GRK1 mRNA]
[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of RGS1 mRNA; Octreotide inhibits the reaction [[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of RGS1 mRNA]; SSTR1 protein affects the reaction [[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of RGS1 mRNA]
Octreotide affects the reaction [SSTR1 protein affects the reaction [[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of GRK1 mRNA]]; SSTR1 protein affects the reaction [[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of GRK1 mRNA]; SSTR1 protein affects the reaction [[Nitrogen co-treated with Iodoacetic Acid] results in increased expression of RGS1 mRNA]
CYP3A4 protein results in increased chemical synthesis of 2-chloro-N-(2,6-diethylphenyl)acetamide [CYP3A4 protein results in increased metabolism of alachlor] which results in increased abundance of 2-chloro-N-(2,6-diethylphenyl)acetamide CYP3A4 protein results in increased abundance of 2-chloro-N-(2,6-diethylphenyl)acetamide