| EC Tree |
| 1. Oxidoreductases |
| 1.14 Acting on paired donors, with incorporation or reduction of molecular oxygen |
| 1.14.11 With 2-oxoglutarate as one donor, and incorporation of one atom of oxygen into each donor |
| ID: | 1.14.11.36 |
|---|---|
| Description: | Pentalenolactone F synthase. |
Click one PDB to see exact 3D structure provided by NGL.
Note: Use your mouse to drag, rotate, and zoom in and out of the structure. Mouse-over to identify atoms and bonds. Mouse controls documentation.| UniProtKB Enzyme Link: | UniProtKB 1.14.11.36 |
| BRENDA Enzyme Link: | BRENDA 1.14.11.36 |
| KEGG Enzyme Link: | KEGG1.14.11.36 |
| BioCyc Enzyme Link: | BioCyc 1.14.11.36 |
| ExPASy Enzyme Link: | ExPASy1.14.11.36 |
| EC2PDB Enzyme Link: | EC2PDB 1.14.11.36 |
| ExplorEnz Enzyme Link: | ExplorEnz 1.14.11.36 |
| PRIAM enzyme-specific profiles Link: | PRIAM 1.14.11.36 |
| IntEnz Enzyme Link: | IntEnz 1.14.11.36 |
| MEDLINE Enzyme Link: | MEDLINE 1.14.11.36 |
| MSA: | |
|---|---|
| Phylogenetic Tree: | |
| Uniprot: | |
| M-CSA: |
| RHEA:34579 | 2 2-oxoglutarate + 2 O2 + pentalenolactone D = 2 CO2 + H2O + pentalenolactone F + 2 succinate |
| RULE(radius=1) | [*:1]-[CH;+0:2](-[*:3])-[CH3;+0:4].[*:5]=[C;H0;+0:6](-[OH;+0:7])-[C;H0;+0:8](=[*:9])-[*:10].[*:11]=[C;H0;+0:12](-[OH;+0:13])-[C;H0;+0:14](=[*:15])-[*:16].[O;H0;+0:17]=[O;H0;+0:18].[O;H0;+0:19]=[O;H0;+0:20]>>[*:1]-[C;H0;+0:2]1(-[*:3])-[CH2;+0:4]-[O;H0;+0:17]-1.[*:9]=[C;H0;+0:8](-[*:10])-[OH;+0:18].[*:15]=[C;H0;+0:14](-[*:16])-[OH;+0:19].[*:5]=[C;H0;+0:6]=[O;H0;+0:7].[*:11]=[C;H0;+0:12]=[O;H0;+0:13].[OH2;+0:20] |
| Reaction | ![]() |
| Core-to-Core |
| Title | Authors | Date | PubMed ID |
|---|---|---|---|
| Genome mining in Streptomyces. Elucidation of the role of Baeyer-Villiger monooxygenases and non-heme iron-dependent dehydrogenase/oxygenases in the final steps of the biosynthesis of pentalenolactone and neopentalenolactone. | Seo MJ, Zhu D, Endo S, Ikeda H, Cane DE | 2011 Mar 15 | 21250661 |