- Gene 'Phmamm.CG.MTP2014.S1...'
Gene Card
Best human hits
HPD; HPDL
Species
Unique Gene ID
Phmamm.g00013788
Gene Model ID
Phmamm.CG.MTP2014.S1127.g13788
Location
S1127:25994..29665
Transcript Models and Sequences
Phmamm.CG.MTP2014.S1127.g13788.01.t
Phmamm.CG.MTP2014.S1127.g13788.02.t
AHC0AAA25YH10
Plate: Plate_25_H10
AHC0AAA3YA04
Plate: Plate_3_A04
AHC0AAA3YN08
Plate: Plate_3_N08
AHC0AAA9YL08
Plate: Plate_9_L08
AHC0AAA75YB16
Plate: Plate_75_B16
AHC0AAA136YC18
Plate: Plate_136_C18
AHC0AAA139YD11
Plate: Plate_139_D11
AHC0AAA140YI04
Plate: Plate_140_I04
AHC0AAA147YJ22
Plate: Plate_147_J22
AHC0AAA147YL24
Plate: Plate_147_L24
AHC0AAA170YK17
Plate: Plate_170_K17
AHC0AAA203YP07
Plate: Plate_203_P07
AHC0AAA217YC17
Plate: Plate_217_C17
AHC0AAA245YL06
Plate: Plate_245_L06
AHC0AAA262YM07
Plate: Plate_262_M07
n/a
You can Right Mouse Click on internal nodes, leaves and outside the tree to see multiple options adapted to your selection.
The 'History' button on the left side permits you to see the changes you have made and eventually to go back.
You can Press 'Shift' Key + Left Mouse Click on the leaf's node to access to a gene card in a new window.
You can Press 'Ctrl' Key + Left Mouse Click on nodes to do a multiple selection.
Click here to see how you can interact with this tree
The 'History' button on the left side permits you to see the changes you have made and eventually to go back.
You can Press 'Shift' Key + Left Mouse Click on the leaf's node to access to a gene card in a new window.
You can Press 'Ctrl' Key + Left Mouse Click on nodes to do a multiple selection.
Click here to see the tree inference method
IPR Term | Analysis | Definition |
---|---|---|
VOC | ProSiteProfiles | Vicinal oxygen chelate (VOC) domain |
Glyas_Fos-R_dOase_dom | Pfam | Glyoxalase/fosfomycin resistance/dioxygenase domain |
Glyas_Bleomycin-R_OHBP_Dase | Gene3D | Glyoxalase/Bleomycin resistance protein/Dihydroxybiphenyl dioxygenase |
4OHPhenylPyrv_dOase | PANTHER | 4-hydroxyphenylpyruvate dioxygenase |
Glyas_Bleomycin-R_OHBP_Dase | SUPERFAMILY | Glyoxalase/Bleomycin resistance protein/Dihydroxybiphenyl dioxygenase |
4OHPhenylPyrv_dOase | TIGRFAM | 4-hydroxyphenylpyruvate dioxygenase |
4OHPhenylPyrv_dOase | PIRSF | 4-hydroxyphenylpyruvate dioxygenase |
GO Term | Annotation Origin | Type |
---|---|---|
Golgi membrane | Orthology | cellular component |
endoplasmic reticulum | Orthology | cellular component |
endoplasmic reticulum membrane | Orthology | cellular component |
Golgi apparatus | Orthology | cellular component |
cytosol | Orthology | cellular component |
metal ion binding | Orthology | molecular function |
oxidation-reduction process | Orthology | biological process |
extracellular exosome | Orthology | cellular component |
catalytic activity | Orthology | molecular function |
aromatic compound catabolic process | Orthology | biological process |
cellular aromatic compound metabolic process | Orthology | biological process |
GO Term | SpeciesCe = Caenorhabditis elegans Dr = Danio rerio Dm = Drosophila melanogaster Gg = Gallus gallus Hs = Homo sapiens Mm = Mus musculus Sc = Saccharomyces cerevisiae |
Type |
---|---|---|
Golgi membrane | Hs | cellular component |
4-hydroxyphenylpyruvate dioxygenase activity | Hs | molecular function |
endoplasmic reticulum | Hs | cellular component |
endoplasmic reticulum membrane | Hs | cellular component |
Golgi apparatus | Hs | cellular component |
cytosol | Hs | cellular component |
L-phenylalanine catabolic process | Hs | biological process |
tyrosine catabolic process | Hs | biological process |
aromatic amino acid family metabolic process | Hs | biological process |
oxidoreductase activity | Hs | molecular function |
oxidoreductase activity, acting on single donors with incorporation of molecular oxygen | Hs | molecular function |
metal ion binding | Hs | molecular function |
dioxygenase activity | Hs | molecular function |
oxidation-reduction process | Hs | biological process |
extracellular exosome | Hs | cellular component |
GO Term | SpeciesCe = Caenorhabditis elegans Dr = Danio rerio Dm = Drosophila melanogaster Gg = Gallus gallus Hs = Homo sapiens Mm = Mus musculus Sc = Saccharomyces cerevisiae |
Type | Score | E-value |
---|---|---|---|---|
Golgi membrane | Hs | cellular component | 382 | 8.16e-133 |
4-hydroxyphenylpyruvate dioxygenase activity | Hs | molecular function | 382 | 8.16e-133 |
endoplasmic reticulum | Hs | cellular component | 382 | 8.16e-133 |
endoplasmic reticulum membrane | Hs | cellular component | 382 | 8.16e-133 |
Golgi apparatus | Hs | cellular component | 382 | 8.16e-133 |
cytosol | Hs | cellular component | 382 | 8.16e-133 |
oxidoreductase activity | Hs | molecular function | 382 | 8.16e-133 |
oxidoreductase activity, acting on single donors with incorporation of molecular oxygen | Hs | molecular function | 382 | 8.16e-133 |
metal ion binding | Hs | molecular function | 382 | 8.16e-133 |
dioxygenase activity | Hs | molecular function | 382 | 8.16e-133 |
extracellular exosome | Hs | cellular component | 382 | 8.16e-133 |
GO Term | Analysis | Type | e-value |
---|---|---|---|
4-hydroxyphenylpyruvate dioxygenase activity | PANTHER | molecular function | 2.8E-109 |
aromatic amino acid family metabolic process | PANTHER | biological process | 2.8E-109 |
oxidoreductase activity, acting on single donors with incorporation of molecular oxygen | PANTHER | molecular function | 2.8E-109 |
oxidation-reduction process | PANTHER | biological process | 2.8E-109 |