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HST-2 HST-2 F1C9.19 F1C9.19 F7H19.50 F7H19.50 SHT SHT ANS ANS CHS CHS PAL1 PAL1 PAL2 PAL2 PAL3 PAL3 DFRA DFRA CYP73A5 CYP73A5 MYB1 MYB1 LDOX LDOX FLS1 FLS1 BHLH2 BHLH2 MTI20.9 MTI20.9 A3G2XYLT A3G2XYLT F3H F3H CYP75B1 CYP75B1 PAL4 PAL4
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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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query proteins and first shell of interactors
white nodes:
second shell of interactors
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proteins of unknown 3D structure
filled nodes:
a 3D structure is known or predicted
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experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
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textmining
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HST-2Shikimate O-hydroxycinnamoyltransferase; Acyltransferase involved in the biosynthesis of lignin. Accepts caffeoyl-CoA and p- coumaroyl-CoA as substrates and transfers the acyl group on both shikimate and quinate acceptors. (433 aa)
F1C9.19Transferase. (666 aa)
F7H19.502-oxoglutarate (2OG) and Fe(II)-dependent oxygenase superfamily protein. (153 aa)
SHTSpermidine hydroxycinnamoyl transferase; Hydroxycinnamoyl transferase involved in the conjugation of feruloyl CoA to spermidine. Able to perform all three conjugating steps required for the biosynthesis of N1,N5,N10-triferuloyl-spermidine. Spermidine is the only acceptor substrate while feruloyl CoA > caffeoyl CoA > coumaroyl CoA > cinnamoyl CoA >> sinapoyl CoA are efficient acyl donors. No activity with hydroxyferuloyl CoA. (451 aa)
ANSProbable 2-oxoglutarate-dependent dioxygenase ANS; Involved in anthocyanin and protoanthocyanidin biosynthesis by catalyzing the oxidation of leucoanthocyanidins into anthocyanidins. (353 aa)
CHSChalcone synthase; The primary product of this enzyme is 4,2',4',6'- tetrahydroxychalcone (also termed naringenin-chalcone or chalcone) which can under specific conditions spontaneously isomerize into naringenin. (395 aa)
PAL1Phenylalanine ammonia-lyase 1; This is a key enzyme of plant metabolism catalyzing the first reaction in the biosynthesis from L-phenylalanine of a wide variety of natural products based on the phenylpropane skeleton; Belongs to the PAL/histidase family. (725 aa)
PAL2Phenylalanine ammonia-lyase 2; This is a key enzyme of plant metabolism catalyzing the first reaction in the biosynthesis from L-phenylalanine of a wide variety of natural products based on the phenylpropane skeleton; Belongs to the PAL/histidase family. (717 aa)
PAL3Phenylalanine ammonia-lyase 3; This is a key enzyme of plant metabolism catalyzing the first reaction in the biosynthesis from L-phenylalanine of a wide variety of natural products based on the phenylpropane skeleton. (694 aa)
DFRADihydroflavonol 4-reductase; Bifunctional enzyme involved in flavonoid metabolism. (382 aa)
CYP73A5Trans-cinnamate 4-monooxygenase; Controls carbon flux to pigments essential for pollination or UV protection, to numerous pytoalexins synthesized by plants when challenged by pathogens, and to lignins. (505 aa)
MYB1Transcription factor MYB1. (393 aa)
LDOXLeucoanthocyanidin dioxygenase; Involved in anthocyanin and protoanthocyanidin biosynthesis by catalyzing the oxidation of leucoanthocyanidins into anthocyanidins. Possesses low flavonol synthase activity in vitro towards dihydrokaempferol and dihydroquercetin producing kaempferol and quercitin, respectively. Belongs to the iron/ascorbate-dependent oxidoreductase family. (356 aa)
FLS1Flavonol synthase/flavanone 3-hydroxylase; Catalyzes the formation of flavonols from dihydroflavonols. It can act on dihydrokaempferol to produce kaempferol, on dihydroquercetin to produce quercitin and on dihydromyricetin to produce myricetin. In vitro catalyzes the oxidation of both enantiomers of naringenin to give both cis- and trans-dihydrokaempferol. Belongs to the iron/ascorbate-dependent oxidoreductase family. (336 aa)
BHLH2Transcription factor EGL1; Transcription activator, when associated with MYB75/PAP1, MYB90/PAP2 or TT2. Involved in epidermal cell fate specification. Regulates negatively stomata formation but promotes trichome formation. Together with MYB66/WER, promotes the formation of non-hair cells in root epidermis cells in the N position. Whereas together with CPC, promotes the formation of hair cells in root epidermis cells in the H position by inhibiting non-hair cell formation. Seems also to play a role in the activation of anthocyanin biosynthesis, probably together with MYB75/PAP1. Involve [...] (596 aa)
MTI20.9HXXXD-type acyl-transferase family protein. (443 aa)
A3G2XYLTAnthocyanidin 3-O-glucoside 2'''-O-xylosyltransferase; Contributes to the last few anthocyanin biosynthetic steps. Converts cyanidin 3-O-glucoside to cyanidin 3-O-xylosyl(1->2)glucoside. Can use 3-O-glucosylated anthocyanidins/flavonols and uridine diphosphate (UDP)-xylose as substrates. (468 aa)
F3HNaringenin,2-oxoglutarate 3-dioxygenase; Catalyzes the 3-beta-hydroxylation of 2S-flavanones to 2R,3R- dihydroflavonols which are intermediates in the biosynthesis of flavonols, anthocyanidins, catechins and proanthocyanidins in plants. (358 aa)
CYP75B1Flavonoid 3'-monooxygenase; Catalyzes the 3'-hydroxylation of the flavonoid B-ring to the 3',4'-hydroxylated state. Convert naringenin to eriodictyol and dihydrokaempferol to dihydroquercetin; Belongs to the cytochrome P450 family. (513 aa)
PAL4Phenylalanine ammonia-lyase 4; This is a key enzyme of plant metabolism catalyzing the first reaction in the biosynthesis from L-phenylalanine of a wide variety of natural products based on the phenylpropane skeleton; Belongs to the PAL/histidase family. (707 aa)
Your Current Organism:
Arabidopsis thaliana
NCBI taxonomy Id: 3702
Other names: A. thaliana, Arabidopsis thaliana (L.) Heynh., mouse-ear cress, thale cress, thale-cress
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