Q6EIG3
Gene name |
cyp26b1 |
Protein name |
Cytochrome P450 26B1 |
Names |
Cyp26B1, Retinoic acid-metabolizing cytochrome |
Species |
Danio rerio (Zebrafish) (Brachydanio rerio) |
KEGG Pathway |
dre:324188 |
EC number |
|
Protein Class |
|
Descriptions
The autoinhibited protein was predicted that may have potential autoinhibitory elements via cis-regPred.
Autoinhibitory domains (AIDs)
Target domain |
|
Relief mechanism |
|
Assay |
cis-regPred |
Accessory elements
No accessory elements
Autoinhibited structure
Activated structure
1 structures for Q6EIG3
| Entry ID | Method | Resolution | Chain | Position | Source |
|---|---|---|---|---|---|
| AF-Q6EIG3-F1 | Predicted | AlphaFoldDB |
No variants for Q6EIG3
| Variant ID(s) | Position | Change | Description | Diseaes Association | Provenance |
|---|---|---|---|---|---|
| No variants for Q6EIG3 | |||||
No associated diseases with Q6EIG3
1 regional properties for Q6EIG3
| Type | Name | Position | InterPro Accession |
|---|---|---|---|
| conserved_site | Cytochrome P450, conserved site | 466 - 475 | IPR017972 |
1 GO annotations of cellular component
| Name | Definition |
|---|---|
| endoplasmic reticulum membrane | The lipid bilayer surrounding the endoplasmic reticulum. |
5 GO annotations of molecular function
| Name | Definition |
|---|---|
| heme binding | Binding to a heme, a compound composed of iron complexed in a porphyrin (tetrapyrrole) ring. |
| iron ion binding | Binding to an iron (Fe) ion. |
| monooxygenase activity | Catalysis of the incorporation of one atom from molecular oxygen into a compound and the reduction of the other atom of oxygen to water. |
| oxidoreductase activity | Catalysis of an oxidation-reduction (redox) reaction, a reversible chemical reaction in which the oxidation state of an atom or atoms within a molecule is altered. One substrate acts as a hydrogen or electron donor and becomes oxidized, while the other acts as hydrogen or electron acceptor and becomes reduced. |
| retinoic acid 4-hydroxylase activity | Catalysis of the conversion of retinoic acid to 4-hydroxy-retinoic acid. |
15 GO annotations of biological process
| Name | Definition |
|---|---|
| bone morphogenesis | The process in which bones are generated and organized. |
| cartilage morphogenesis | The process in which the anatomical structures of cartilage are generated and organized. |
| coronal suture morphogenesis | The process in which the coronal suture is generated and organized. |
| cranial suture morphogenesis | The process in which any suture between cranial bones is generated and organized. |
| embryonic cranial skeleton morphogenesis | The process in which the anatomical structures of the cranial skeleton are generated and organized during the embryonic phase. |
| head morphogenesis | The process in which the anatomical structures of the head are generated and organized. The head is the anterior-most division of the body. |
| hindbrain development | The process whose specific outcome is the progression of the hindbrain over time, from its formation to the mature structure. The hindbrain is the posterior of the three primary divisions of the developing chordate brain, or the corresponding part of the adult brain (in vertebrates, includes the cerebellum, pons, and medulla oblongata and controls the autonomic functions and equilibrium). |
| negative regulation of retinoic acid receptor signaling pathway | Any process that stops, prevents, or reduces the frequency, rate or extent of retinoic acid receptor signaling pathway activity. |
| odontogenesis | The process whose specific outcome is the progression of a tooth or teeth over time, from formation to the mature structure(s). A tooth is any hard bony, calcareous, or chitinous organ found in the mouth or pharynx of an animal and used in procuring or masticating food. |
| regulation of ossification | Any process that modulates the frequency, rate or extent of ossification, the formation of bone or of a bony substance or the conversion of fibrous tissue or of cartilage into bone or a bony substance. |
| retinoic acid catabolic process | The chemical reactions and pathways resulting in the breakdown of retinoic acid, one of the three components that makes up vitamin A. |
| retinoic acid metabolic process | The chemical reactions and pathways involving retinoic acid, one of the three components that makes up vitamin A. |
| rhombomere 4 morphogenesis | The process in which the anatomical structure of rhombomere 4 is generated and organized. Rhombomeres are transverse segments of the developing rhombencephalon. Rhombomeres are lineage restricted, express different genes from one another, and adopt different developmental fates. Rhombomeres are numbered in an anterior to posterior order. |
| sterol metabolic process | The chemical reactions and pathways involving sterols, steroids with one or more hydroxyl groups and a hydrocarbon side-chain in the molecule. |
| tendon formation | The process that gives rise to a tendon. This process pertains to the initial formation of a tendon from unspecified parts. |
36 homologous proteins in AiPD
| UniProt AC | Gene Name | Protein Name | Species | Evidence Code |
|---|---|---|---|---|
| Q9VYQ5 | Cyp318a1 | Probable cytochrome P450 318a1 | Drosophila melanogaster (Fruit fly) | PR |
| Q9VXY0 | Cyp4s3 | Probable cytochrome P450 4s3 | Drosophila melanogaster (Fruit fly) | PR |
| Q9VMS7 | Cyp4ac3 | Probable cytochrome P450 4ac3 | Drosophila melanogaster (Fruit fly) | PR |
| Q9V559 | Cyp4p3 | Probable cytochrome P450 4p3 | Drosophila melanogaster (Fruit fly) | PR |
| Q9V7G5 | Cyp4aa1 | Probable cytochrome P450 4aa1 | Drosophila melanogaster (Fruit fly) | PR |
| Q9VMS8 | Cyp4ac2 | Probable cytochrome P450 4ac2 | Drosophila melanogaster (Fruit fly) | PR |
| Q9VVN6 | Cyp312a1 | Probable cytochrome P450 312a1 | Drosophila melanogaster (Fruit fly) | PR |
| Q02928 | CYP4A11 | Cytochrome P450 4A11 | Homo sapiens (Human) | PR |
| Q86W10 | CYP4Z1 | Cytochrome P450 4Z1 | Homo sapiens (Human) | PR |
| Q5TCH4 | CYP4A22 | Cytochrome P450 4A22 | Homo sapiens (Human) | PR |
| P13584 | CYP4B1 | Cytochrome P450 4B1 | Homo sapiens (Human) | PR |
| Q6ZWL3 | CYP4V2 | Cytochrome P450 4V2 | Homo sapiens (Human) | PR |
| B6SSW8 | CYP714B3 | Cytochrome P450 714B3 | Zea mays (Maize) | PR |
| O35728 | Cyp4a14 | Cytochrome P450 4A14 | Mus musculus (Mouse) | PR |
| Q91WL5 | Cyp4a12a | Cytochrome P450 4A12A | Mus musculus (Mouse) | PR |
| Q9GJX5 | CYP4A21 | Taurochenodeoxycholic 6 alpha-hydroxylase | Sus scrofa (Pig) | PR |
| Q8SPK1 | CYP4A24 | Cytochrome P450 4A24 | Sus scrofa (Pig) | PR |
| P24464 | Cyp4a12 | Cytochrome P450 4A12 | Rattus norvegicus (Rat) | PR |
| P20816 | Cyp4a2 | Cytochrome P450 4A2 | Rattus norvegicus (Rat) | PR |
| G3V7X8 | Cyp26b1 | Cytochrome P450 26B1 | Rattus norvegicus (Rat) | PR |
| Q0DS59 | CYP714B2 | Cytochrome P450 714B2 | Oryza sativa subsp japonica (Rice) | PR |
| Q5KQH7 | CYP714D1 | Cytochrome P450 714D1 | Oryza sativa subsp japonica (Rice) | PR |
| Q6F4F5 | CYP724B1 | Cytochrome P450 724B1 | Oryza sativa subsp japonica (Rice) | PR |
| Q05JG2 | CYP707A5 | Abscisic acid 8'-hydroxylase 1 | Oryza sativa subsp japonica (Rice) | PR |
| Q9SHG5 | CYP72C1 | Cytochrome P450 72C1 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| Q9C788 | CYP704B1 | Cytochrome P450 704B1 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| Q9ZUX1 | CYP94C1 | Cytochrome P450 94C1 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| O64698 | CYP710A2 | Cytochrome P450 710A2 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| O64697 | CYP710A1 | Cytochrome P450 710A1 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| Q9LUC9 | CYP72A11 | Cytochrome P450 72A11 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| Q9LUC8 | CYP72A13 | Cytochrome P450 72A13 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| Q9LUC6 | CYP72A14 | Cytochrome P450 72A14 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| Q9LUC5 | CYP72A15 | Cytochrome P450 72A15 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| Q6TBX7 | CYP97C1 | Carotene epsilon-monooxygenase, chloroplastic | Arabidopsis thaliana (Mouse-ear cress) | PR |
| O81077 | CYP707A2 | Abscisic acid 8'-hydroxylase 2 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| Q94IA6 | CYP90D1 | 3-epi-6-deoxocathasterone 23-monooxygenase CYP90D1 | Arabidopsis thaliana (Mouse-ear cress) | PR |
| 10 | 20 | 30 | 40 | 50 | 60 |
| MLFESFDLVS | ALATLAACLV | SMALLLAVPQ | QLWQLRWTAT | RDKSCKLPMP | KGSMGFPIIG |
| 70 | 80 | 90 | 100 | 110 | 120 |
| ETCHWFFQGA | GFHASRRQKY | GNVFKTHLLG | RPLIRVTGAE | NVRKVLMGEH | SLVTVDWPQS |
| 130 | 140 | 150 | 160 | 170 | 180 |
| TSTLLGPNSL | ANSIGDIHRK | RRKIFAKVFS | HEALESYLPK | IQQVIQETLR | VWSSNPDPIN |
| 190 | 200 | 210 | 220 | 230 | 240 |
| VYRESQRLSF | NMAVRVLLGF | RIPEEEMHCL | FSTFQEFVEN | VFSLPIDLPF | SGYRKGIRAR |
| 250 | 260 | 270 | 280 | 290 | 300 |
| DSLQKSIEKA | IREKPLHTQG | KDYTDALDVL | LESAKENNTE | LTMQELKEST | IELIFAAFAT |
| 310 | 320 | 330 | 340 | 350 | 360 |
| TASASTSLVM | QLLRHPAVLE | KLREELRSCG | LLHDGCLCQG | ELRLDSIISL | KYLDCVIKEV |
| 370 | 380 | 390 | 400 | 410 | 420 |
| LRLFAPVSGG | YRIATQTFEL | DGVQVPKGWS | VMYSIRDTHD | TSAVFKDVEA | FDPDRFSPER |
| 430 | 440 | 450 | 460 | 470 | 480 |
| SEDREGRFHY | LPFGGGVRSC | LGKQLATLFL | KLLAVELAGG | SRFELSTRTF | PRMISVPVVH |
| 490 | 500 | 510 | |||
| PTDGLRVKFF | GLDSNQNQIM | AKSDEMLDAT | V |