Gene Card
Best human hits
NDUFS2
Species
Unique Gene ID
Phmamm.g00002360
Gene Model ID
Phmamm.CG.MTP2014.S66.g02360
Location
S66:128624..135179
Transcript Models and Sequences
Phmamm.CG.MTP2014.S66.g02360.01.t
Phmamm.CG.MTP2014.S66.g02360.02.t
Phmamm.CG.MTP2014.S66.g02360.03.t
Phmamm.CG.MTP2014.S66.g02360.04.t
AHC0AAA17YN03
Plate: Plate_17_N03
AHC0AAA69YJ18
Plate: Plate_69_J18
AHC0AAA79YD02
Plate: Plate_79_D02
AHC0AAA136YF16
Plate: Plate_136_F16
AHC0AAA145YI08
Plate: Plate_145_I08
AHC0AAA170YG09
Plate: Plate_170_G09
AHC0AAA216YL12
Plate: Plate_216_L12
AHC0AAA217YE02
Plate: Plate_217_E02
AHC0AAA226YH06
Plate: Plate_226_H06
AHC0AAA226YJ21
Plate: Plate_226_J21
AHC0AAA230YH06
Plate: Plate_230_H06
AHC0AAA240YK06
Plate: Plate_240_K06
AHC0AAA248YN23
Plate: Plate_248_N23
AHC0AAA256YO05
Plate: Plate_256_O05
n/a
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 |
---|---|---|
NiFe-Hase_large | SUPERFAMILY | [NiFe]-hydrogenase, large subunit |
NADH_Q_OxRdtase_suD_sf | Gene3D | NADH-quinone oxidoreductase, subunit D superfamily |
NADH_Q_OxRdtase_suD | Pfam | NADH-quinone oxidoreductase, subunit D |
NADH_UbQ_OxRdtase_49kDa_CS | ProSitePatterns | NADH:ubiquinone oxidoreductase, 49kDa subunit, conserved site |
NDH1_su_D/H | TIGRFAM | NAD(P)H-quinone oxidoreductase subunit D/H |
NDH1_su_D/H | Hamap | NAD(P)H-quinone oxidoreductase subunit D/H |
GO Term | Annotation Origin | Type |
---|---|---|
protein binding | Orthology | molecular function |
nucleoplasm | Orthology | cellular component |
mitochondrion | Orthology | cellular component |
mitochondrial inner membrane | Orthology | cellular component |
mitochondrial matrix | Orthology | cellular component |
response to oxidative stress | Orthology | biological process |
membrane | Orthology | cellular component |
ubiquitin protein ligase binding | Orthology | molecular function |
metal ion binding | Orthology | molecular function |
oxidation-reduction process | Orthology | biological process |
catalytic activity | Orthology | molecular function |
membrane part | Orthology | cellular component |
macromolecular complex | Orthology | cellular component |
phosphorylation | Orthology | biological process |
transmembrane transport | Orthology | biological process |
monovalent inorganic cation transport | Orthology | biological process |
cellular metabolic process | Orthology | biological process |
organelle organization | Orthology | biological process |
cofactor binding | Orthology | molecular function |
nucleotide binding | Orthology | molecular function |
coenzyme binding | Orthology | molecular function |
GO Term | SpeciesCe = Caenorhabditis elegans Dr = Danio rerio Dm = Drosophila melanogaster Gg = Gallus gallus Hs = Homo sapiens Mm = Mus musculus Sc = Saccharomyces cerevisiae |
Type |
---|---|---|
NADH dehydrogenase activity | Hs | molecular function |
protein binding | Hs | molecular function |
nucleoplasm | Hs | cellular component |
mitochondrion | Hs | cellular component |
mitochondrial inner membrane | Hs | cellular component |
mitochondrial respiratory chain complex I | Hs | cellular component |
mitochondrial matrix | Hs | cellular component |
mitochondrial electron transport, NADH to ubiquinone | Hs | biological process |
response to oxidative stress | Hs | biological process |
NADH dehydrogenase (ubiquinone) activity | Hs | molecular function |
electron carrier activity | Hs | molecular function |
membrane | Hs | cellular component |
oxidoreductase activity | Hs | molecular function |
oxidoreductase activity, acting on NAD(P)H | Hs | molecular function |
ubiquitin protein ligase binding | Hs | molecular function |
mitochondrial respiratory chain complex I assembly | Hs | biological process |
mitochondrial ATP synthesis coupled electron transport | Hs | biological process |
metal ion binding | Hs | molecular function |
quinone binding | Hs | molecular function |
NAD binding | Hs | molecular function |
iron-sulfur cluster binding | Hs | molecular function |
4 iron, 4 sulfur cluster binding | Hs | molecular function |
oxidation-reduction process | Hs | biological process |
respiratory chain | 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 |
---|---|---|---|---|
NADH dehydrogenase activity | Hs | molecular function | 621 | 0.0 |
protein binding | Hs | molecular function | 621 | 0.0 |
nucleoplasm | Hs | cellular component | 621 | 0.0 |
mitochondrion | Hs | cellular component | 621 | 0.0 |
mitochondrial inner membrane | Hs | cellular component | 621 | 0.0 |
mitochondrial respiratory chain complex I | Hs | cellular component | 621 | 0.0 |
mitochondrial matrix | Hs | cellular component | 621 | 0.0 |
NADH dehydrogenase (ubiquinone) activity | Hs | molecular function | 621 | 0.0 |
electron carrier activity | Hs | molecular function | 621 | 0.0 |
membrane | Hs | cellular component | 621 | 0.0 |
oxidoreductase activity | Hs | molecular function | 621 | 0.0 |
oxidoreductase activity, acting on NAD(P)H | Hs | molecular function | 621 | 0.0 |
ubiquitin protein ligase binding | Hs | molecular function | 621 | 0.0 |
metal ion binding | Hs | molecular function | 621 | 0.0 |
quinone binding | Hs | molecular function | 621 | 0.0 |
NAD binding | Hs | molecular function | 621 | 0.0 |
iron-sulfur cluster binding | Hs | molecular function | 621 | 0.0 |
4 iron, 4 sulfur cluster binding | Hs | molecular function | 621 | 0.0 |
respiratory chain | Hs | cellular component | 621 | 0.0 |
GO Term | Analysis | Type | e-value |
---|---|---|---|
oxidoreductase activity, acting on NAD(P)H | TIGRFAM | molecular function | 5.4E-164 |
quinone binding | Pfam | molecular function | 9.4E-124 |
NAD binding | Pfam | molecular function | 9.4E-124 |
oxidation-reduction process | TIGRFAM | biological process | 5.4E-164 |