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CHEBI ONTOLOGY - ANNOTATIONS

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.

Term:chlorobutanol
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Accession:CHEBI:134813 term browser browse the term
Synonyms:related_synonym: Formula=C4H7Cl3O;   InChI=1S/C4H7Cl3O/c1-3(2,8)4(5,6)7/h8H,1-2H3;   InChIKey=OSASVXMJTNOKOY-UHFFFAOYSA-N;   SMILES=CC(C)(O)C(Cl)(Cl)Cl;   acetochlorone;   acetonchloroform;   acetone chloroform;   chlorbutanol;   chlorbutol;   chloreton;   chloretone;   trichlorobutanol
 xref: CAS:57-15-8;   Drug_Central:3092
 xref_mesh: MESH:D002724



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chlorobutanol term browser
Symbol Object Name Qualifiers Evidence Notes Source PubMed Reference(s) RGD Reference(s) Position
G Gabbr1 gamma-aminobutyric acid type B receptor subunit 1 multiple interactions ISO Chlorobutanol inhibits the reaction [gamma-Aminobutyric Acid results in increased activity of GABBR1 protein] CTD PMID:10683198 NCBI chr20:1,464,534...1,494,114
Ensembl chr20:1,464,534...1,493,994
JBrowse link
G Gabra2 gamma-aminobutyric acid type A receptor subunit alpha 2 multiple interactions ISO Chlorobutanol promotes the reaction [gamma-Aminobutyric Acid results in increased activity of [GABRA2 protein binds to GABRB1 protein]] CTD PMID:10683198 NCBI chr14:37,097,251...37,230,030
Ensembl chr14:37,097,279...37,228,944
JBrowse link
G Gabrb1 gamma-aminobutyric acid type A receptor subunit beta1 multiple interactions ISO Chlorobutanol promotes the reaction [gamma-Aminobutyric Acid results in increased activity of [GABRA2 protein binds to GABRB1 protein]] CTD PMID:10683198 NCBI chr14:36,068,725...36,548,946
Ensembl chr14:36,080,393...36,548,948
JBrowse link
G Glra1 glycine receptor, alpha 1 multiple interactions ISO Chlorobutanol promotes the reaction [Glycine Agents results in increased activity of GLRA1 protein] CTD PMID:10683198 NCBI chr10:39,625,853...39,727,897
Ensembl chr10:39,629,459...39,727,162
JBrowse link
G Kcnh2 potassium voltage-gated channel subfamily H member 2 multiple interactions
decreases activity
ISO Chlorobutanol binds to and results in decreased activity of KCNH2 protein; Chlorobutanol promotes the reaction [Methadone results in decreased activity of KCNH2 protein]; Chlorobutanol promotes the reaction [Terfenadine binds to and results in decreased activity of KCNH2 protein]; Terfenadine promotes the reaction [Chlorobutanol binds to and results in decreased activity of KCNH2 protein]
Chlorobutanol results in decreased activity of KCNH2 protein
CTD PMID:14527710 PMID:20071423 NCBI chr 4:10,826,834...10,859,009
Ensembl chr 4:10,826,928...10,859,008
JBrowse link

Term paths to the root
Path 1
Term Annotations click to browse term
  CHEBI ontology 19918
    chemical entity 19916
      molecular entity 19916
        polyatomic entity 19874
          heteroatomic molecular entity 19830
            hydroxides 19389
              organic hydroxy compound 19003
                alcohol 15559
                  tertiary alcohol 10192
                    chlorobutanol 5
Path 2
Term Annotations click to browse term
  CHEBI ontology 19918
    subatomic particle 19916
      composite particle 19916
        hadron 19916
          baryon 19916
            nucleon 19916
              atomic nucleus 19916
                atom 19916
                  main group element atom 19866
                    p-block element atom 19866
                      p-block molecular entity 19866
                        chalcogen molecular entity 19612
                          oxygen molecular entity 19586
                            hydroxides 19389
                              organic hydroxy compound 19003
                                alcohol 15559
                                  tertiary alcohol 10192
                                    chlorobutanol 5
paths to the root