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| Title | Functional and Structural Studies on the Esperamicin Thioesterase and Progress toward Understanding Enediyne Core Biosynthesis. |
|---|---|
| Journal, issue, pages | J. Nat. Prod., Vol. 88, Page 2360-2371, Year 2025 |
| Publish date | Jun 23, 2024 (structure data deposition date) |
Authors | Hankore, E.D. / Miller, M.D. / Kosgei, A.J. / Xu, W. / Tan, K. / Endres, M. / Bhardwaj, M. / Joachimiak, G. / Joachimiak, A. / Phillips Jr., G.N. ...Hankore, E.D. / Miller, M.D. / Kosgei, A.J. / Xu, W. / Tan, K. / Endres, M. / Bhardwaj, M. / Joachimiak, G. / Joachimiak, A. / Phillips Jr., G.N. / Thorson, J.S. / Van Lanen, S.G. |
External links | J. Nat. Prod. / PubMed:41066299 |
| Methods | X-ray diffraction |
| Resolution | 1.57 Å |
| Structure data | ![]() PDB-9ccr: |
| Chemicals | ![]() ChemComp-K: ![]() ChemComp-DCC: ![]() ChemComp-HOH: |
| Source |
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Keywords | HYDROLASE / thioesterase / hot-dog / enediyne biosynthetic pathway / esperamicin biosynthesis / Natural product biosynthesis |
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actinomadura verrucosospora (bacteria)
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