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CYP26C1 CYP26C1 FMO1 FMO1 MLST8 MLST8 FMO6P FMO6P FMO3 FMO3 PDSS2 PDSS2 CYP26A1 CYP26A1 SDR9C7 SDR9C7 IDH3G IDH3G IDH3B IDH3B FMO2 FMO2 CYP26B1 CYP26B1 FMO5 FMO5 ATP6V1A ATP6V1A
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
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small nodes:
protein of unknown 3D structure
large protein node
large nodes:
some 3D structure is known or predicted
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colored nodes:
query proteins and first shell of interactors
non-colored protein node
white nodes:
second shell of interactors
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Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding each other.
Known Interactions
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from curated databases
experiment edge
experimentally determined
Predicted Interactions
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gene neighborhood
fusion edge
gene fusions
cooccurrence edge
gene co-occurrence
Others
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textmining
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co-expression
homology edge
protein homology
Your Input:
CYP26B1cytochrome P450, family 26, subfamily B, polypeptide 1 (512 aa)
FMO2flavin containing monooxygenase 2 (non-functional); Catalyzes the N-oxidation of certain primary alkylamines to their oximes via an N-hydroxylamine intermediate. Inactive toward certain tertiary amines, such as imipramine or chloropromazine. Can catalyze the S-oxidation of methimazole. The truncated form is catalytically inactive (471 aa)
IDH3Gisocitrate dehydrogenase 3 (NAD+) gamma (393 aa)
CYP26A1cytochrome P450, family 26, subfamily A, polypeptide 1; Plays a key role in retinoic acid metabolism. Acts on retinoids, including all-trans-retinoic acid (RA) and its stereoisomer 9-cis-RA. Capable of both 4-hydroxylation and 18- hydroxylation. Responsible for generation of several hydroxylated forms of RA, including 4-OH-RA, 4-oxo-RA and 18-OH-RA (497 aa)
FMO6Pflavin containing monooxygenase 6 pseudogene; It is probable that this protein is only produced in very small quantity or not at all as the gene coding for it seems to be unable to produce full length transcripts (539 aa)
FMO5flavin containing monooxygenase 5; In contrast with other forms of FMO it does not seem to be a drug-metabolizing enzyme (533 aa)
ATP6V1AATPase, H+ transporting, lysosomal 70kDa, V1 subunit A; Catalytic subunit of the peripheral V1 complex of vacuolar ATPase. V-ATPase vacuolar ATPase is responsible for acidifying a variety of intracellular compartments in eukaryotic cells (617 aa)
CYP26C1cytochrome P450, family 26, subfamily C, polypeptide 1; Plays a role in retinoic acid metabolism. Acts on retinoids, including all-trans-retinoic acid (RA) and its stereoisomer 9-cis-RA (preferred substrate) (522 aa)
SDR9C7short chain dehydrogenase/reductase family 9C, member 7; Displays weak conversion of all-trans-retinal to all- trans-retinol in the presence of NADH. Has apparently no steroid dehydrogenase activity (313 aa)
FMO1flavin containing monooxygenase 1; This protein is involved in the oxidative metabolism of a variety of xenobiotics such as drugs and pesticides. Form I catalyzes the N-oxygenation of secondary and tertiary amines (532 aa)
FMO3flavin containing monooxygenase 3; Involved in the oxidative metabolism of a variety of xenobiotics such as drugs and pesticides. It N-oxygenates primary aliphatic alkylamines as well as secondary and tertiary amines. Plays an important role in the metabolism of trimethylamine (TMA), via the production of TMA N-oxide (TMAO). Is also able to perform S-oxidation when acting on sulfide compounds (532 aa)
PDSS2prenyl (decaprenyl) diphosphate synthase, subunit 2; Supplies decaprenyl diphosphate, the precursor for the side chain of the isoprenoid quinones ubiquinone-10 (399 aa)
IDH3Bisocitrate dehydrogenase 3 (NAD+) beta (385 aa)
MLST8MTOR associated protein, LST8 homolog (S. cerevisiae) (326 aa)
Your Current Organism:
Homo sapiens
NCBI taxonomy Id: 9606
Other names: H. sapiens, Homo, Homo sapiens, human, man
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