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ONTOLOGY REPORT - ANNOTATIONS


Term:peptidyl-cysteine oxidation
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Accession:GO:0018171 term browser browse the term
Definition:The oxidation of peptidyl-cysteine to peptidyl-L-cysteine sulfinic acid or peptidyl-L-cysteine sulfenic acid.
Synonyms:xref: RESID:AA0205;   RESID:AA0262


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peptidyl-cysteine oxidation term browser
Symbol Object Name JBrowse Chr Start Stop Reference
G Chchd4 coiled-coil-helix-coiled-coil-helix domain containing 4 JBrowse link 4 123,108,924 123,118,186 RGD:1600115
RGD:1624291
G LOC100361898 coiled-coil-helix-coiled-coil-helix domain containing 4 JBrowse link 1 248,402,889 248,403,604 RGD:1600115
G Prdx3 peroxiredoxin 3 JBrowse link 1 282,238,774 282,251,193 RGD:1624291
RGD:1600115
G Tmx3 thioredoxin-related transmembrane protein 3 JBrowse link 18 87,580,227 87,613,481 RGD:1624291
RGD:13792537
enzyme active site formation via L-cysteine sulfinic acid term browser
Symbol Object Name JBrowse Chr Start Stop Reference
G Park7 Parkinsonism associated deglycase JBrowse link 5 167,982,438 168,004,724 RGD:1624291

Term paths to the root
Path 1
Term Annotations click to browse term
  biological_process 19336
    metabolic process 11555
      oxidation-reduction process 1089
        protein oxidation 15
          peptidyl-cysteine oxidation 5
            enzyme active site formation via L-cysteine sulfenic acid 0
            enzyme active site formation via L-cysteine sulfinic acid 1
Path 2
Term Annotations click to browse term
  biological_process 19336
    metabolic process 11555
      organic substance metabolic process 10949
        macromolecule metabolic process 9418
          cellular macromolecule metabolic process 8127
            cellular protein metabolic process 5293
              cellular protein modification process 3851
                peptidyl-amino acid modification 1272
                  peptidyl-cysteine modification 48
                    peptidyl-cysteine oxidation 5
                      enzyme active site formation via L-cysteine sulfenic acid 0
                      enzyme active site formation via L-cysteine sulfinic acid 1
paths to the root

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RGD is funded by grant HL64541 from the National Heart, Lung, and Blood Institute on behalf of the NIH.