Gene Card
Best human hits
GLUD1; GLUD2
Species
Unique Gene ID
Phmamm.g00003825
Gene Model ID
Phmamm.CG.MTP2014.S128.g03825
Location
S128:214852..224350
Transcript Models and Sequences
Phmamm.CG.MTP2014.S128.g03825.01.t
Phmamm.CG.MTP2014.S128.g03825.02.t
AHC0AAA1YM15
Plate: Plate_1_M15
AHC0AAA36YG10
Plate: Plate_36_G10
AHC0AAA42YF15
Plate: Plate_42_F15
AHC0AAA48YI04
Plate: Plate_48_I04
AHC0AAA77YN08
Plate: Plate_77_N08
AHC0AAA116YE17
Plate: Plate_116_E17
AHC0AAA95YE15
Plate: Plate_95_E15
AHC0AAA210YC20
Plate: Plate_210_C20
AHC0AAA236YI16
Plate: Plate_236_I16
AHC0AAA241YC13
Plate: Plate_241_C13
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.

IPR Term | Analysis | Definition |
---|---|---|
NAD(P)-bd_dom_sf | SUPERFAMILY | NAD(P)-binding domain superfamily |
Glu/Leu/Phe/Val_DH_AS | ProSitePatterns | Leu/Phe/Val dehydrogenases active site |
Glu_DH | PIRSF | Glutamate dehydrogenase |
Glu/Leu/Phe/Val_DH_C | Pfam | Glutamate/phenylalanine/leucine/valine dehydrogenase, C-terminal |
Glu/Leu/Phe/Val_DH | PRINTS | Glutamate/phenylalanine/leucine/valine dehydrogenase |
Glu/Leu/Phe/Val_DH_dimer_dom | Pfam | Glutamate/phenylalanine/leucine/valine dehydrogenase, dimerisation domain |
Glu/Leu/Phe/Val_DH_C | SMART | Glutamate/phenylalanine/leucine/valine dehydrogenase, C-terminal |
NAD_bind_Glu_DH | CDD | NAD(P) binding domain of glutamate dehydrogenase |
GO Term | Annotation Origin | Type |
---|---|---|
nucleotide binding | Orthology | molecular function |
protein binding | Orthology | molecular function |
ATP binding | Orthology | molecular function |
GTP binding | Orthology | molecular function |
cytoplasm | Orthology | cellular component |
mitochondrion | Orthology | cellular component |
mitochondrial matrix | Orthology | cellular component |
identical protein binding | Orthology | molecular function |
oxidation-reduction process | Orthology | biological process |
catalytic activity | Orthology | molecular function |
cellular metabolic process | Orthology | biological process |
cellular biosynthetic process | Orthology | biological process |
organelle organization | Orthology | biological process |
protein transport | Orthology | biological process |
cell-cell signaling | Orthology | biological process |
anion binding | Orthology | molecular function |
adenyl ribonucleotide binding | Orthology | molecular function |
coenzyme binding | Orthology | molecular function |
cation binding | Orthology | molecular function |
small molecule binding | Orthology | molecular function |
organic substance 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 |
---|---|---|
nucleotide binding | Hs | molecular function |
glutamate dehydrogenase (NAD+) activity | Hs | molecular function |
glutamate dehydrogenase [NAD(P)+] activity | Hs | molecular function |
protein binding | Hs | molecular function |
ATP binding | Hs | molecular function |
GTP binding | Hs | molecular function |
cytoplasm | Hs | cellular component |
mitochondrion | Hs | cellular component |
mitochondrial matrix | Hs | cellular component |
cellular amino acid metabolic process | Hs | biological process |
glutamate metabolic process | Hs | biological process |
glutamate biosynthetic process | Hs | biological process |
glutamine metabolic process | Hs | biological process |
mitochondrion organization | Hs | biological process |
cellular amino acid biosynthetic process | Hs | biological process |
oxidoreductase activity | Hs | molecular function |
oxidoreductase activity, acting on the CH-NH2 group of donors, NAD or NADP as acceptor | Hs | molecular function |
positive regulation of insulin secretion | Hs | biological process |
identical protein binding | Hs | molecular function |
ADP binding | Hs | molecular function |
oxidation-reduction process | Hs | biological process |
NAD+ binding | Hs | molecular function |
leucine binding | Hs | molecular function |
tricarboxylic acid metabolic process | Hs | 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 | Score | E-value |
---|---|---|---|---|
nucleotide binding | Hs | molecular function | 693 | 0.0 |
glutamate dehydrogenase (NAD+) activity | Hs | molecular function | 696 | 0.0 |
glutamate dehydrogenase [NAD(P)+] activity | Hs | molecular function | 696 | 0.0 |
protein binding | Hs | molecular function | 693 | 0.0 |
ATP binding | Hs | molecular function | 693 | 0.0 |
GTP binding | Hs | molecular function | 696 | 0.0 |
cytoplasm | Hs | cellular component | 693 | 0.0 |
mitochondrion | Hs | cellular component | 696 | 0.0 |
mitochondrial matrix | Hs | cellular component | 693 | 0.0 |
oxidoreductase activity | Hs | molecular function | 696 | 0.0 |
oxidoreductase activity, acting on the CH-NH2 group of donors, NAD or NADP as acceptor | Hs | molecular function | 696 | 0.0 |
identical protein binding | Hs | molecular function | 693 | 0.0 |
ADP binding | Hs | molecular function | 696 | 0.0 |
NAD+ binding | Hs | molecular function | 693 | 0.0 |
leucine binding | Hs | molecular function | 696 | 0.0 |
GO Term | Analysis | Type | e-value |
---|---|---|---|
cellular amino acid metabolic process | SMART | biological process | 8.5E-66 |
oxidoreductase activity | SMART | molecular function | 8.5E-66 |
oxidoreductase activity, acting on the CH-NH2 group of donors, NAD or NADP as acceptor | PIRSF | molecular function | 4.9E-139 |
oxidation-reduction process | PIRSF | biological process | 4.9E-139 |