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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:mercury molecular entity
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Accession:CHEBI:25196 term browser browse the term
Synonyms:related_synonym: mercury compounds;   mercury molecular entities



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mercury dichloride term browser
Symbol Object Name Qualifiers Evidence Notes Source PubMed Reference(s) RGD Reference(s) Position
G ABCC1 ATP binding cassette subfamily C member 1 multiple interactions
increases expression
EXP ABCC1 protein affects the export of and results in decreased susceptibility to Mercuric Chloride
Mercuric Chloride results in increased expression of ABCC1 mRNA; Mercuric Chloride results in increased expression of ABCC1 protein
CTD PMID:15590114 NCBI chr 6:27,855,702...27,950,140
Ensembl chr 6:27,855,702...27,989,331
JBrowse link
G ABCC2 ATP binding cassette subfamily C member 2 multiple interactions
increases expression
EXP ABCC2 protein affects the export of and results in decreased susceptibility to Mercuric Chloride
Mercuric Chloride results in increased expression of ABCC2 mRNA; Mercuric Chloride results in increased expression of ABCC2 protein
CTD PMID:15590114 NCBI chr28:12,670,885...12,740,124
Ensembl chr28:12,670,885...12,740,740
JBrowse link
G LOC100686073 metallothionein-1 increases expression EXP Mercuric Chloride results in increased expression of MT1 mRNA CTD PMID:15590114 NCBI chr 2:59,603,021...59,604,173
Ensembl chr 2:59,603,014...59,604,132
JBrowse link
G MT2A metallothionein 1H increases expression EXP Mercuric Chloride results in increased expression of MT2 mRNA CTD PMID:15590114 NCBI chr 2:59,607,926...59,608,825
Ensembl chr 2:59,607,927...59,626,727
JBrowse link
mercury(0) term browser
Symbol Object Name Qualifiers Evidence Notes Source PubMed Reference(s) RGD Reference(s) Position
G ABCC1 ATP binding cassette subfamily C member 1 increases expression
multiple interactions
EXP Mercury results in increased expression of ABCC1 mRNA; Mercury results in increased expression of ABCC1 protein
ABCC1 protein affects the export of and results in decreased susceptibility to Mercury
CTD PMID:15590114 NCBI chr 6:27,855,702...27,950,140
Ensembl chr 6:27,855,702...27,989,331
JBrowse link
G ABCC2 ATP binding cassette subfamily C member 2 increases expression
multiple interactions
EXP Mercury results in increased expression of ABCC2 mRNA; Mercury results in increased expression of ABCC2 protein
ABCC2 protein affects the export of and results in decreased susceptibility to Mercury
CTD PMID:15590114 NCBI chr28:12,670,885...12,740,124
Ensembl chr28:12,670,885...12,740,740
JBrowse link

Term paths to the root
Path 1
Term Annotations click to browse term
  CHEBI ontology 503
    chemical entity 503
      molecular entity 503
        transition element molecular entity 13
          d-block molecular entity 13
            zinc group molecular entity 6
              mercury molecular entity 4
                elemental mercury + 2
                mercury coordination entity + 4
                organomercury compound + 0
Path 2
Term Annotations click to browse term
  CHEBI ontology 503
    subatomic particle 503
      composite particle 503
        hadron 503
          baryon 503
            nucleon 503
              atomic nucleus 503
                atom 503
                  metal atom 35
                    transition element atom 15
                      d-block element atom 15
                        d-block molecular entity 13
                          zinc group molecular entity 6
                            mercury molecular entity 4
                              elemental mercury + 2
                              mercury coordination entity + 4
                              organomercury compound + 0
paths to the root