5L84
Structure of the H959F variant of the PpsC dehydratase domain from Mycobacterium tuberculosis
5L84 の概要
| エントリーDOI | 10.2210/pdb5l84/pdb |
| 関連するPDBエントリー | 4OOC 5I0K 5NJI |
| 分子名称 | Phthiocerol synthesis polyketide synthase type I PpsC (1 entity in total) |
| 機能のキーワード | dehydratase, polyketide, complex, tuberculosis, transferase |
| 由来する生物種 | Mycobacterium tuberculosis |
| タンパク質・核酸の鎖数 | 1 |
| 化学式量合計 | 34468.46 |
| 構造登録者 | Faille, A.,Gavalda, S.,Mourey, L.,Pedelacq, J.D. (登録日: 2016-06-07, 公開日: 2017-08-30, 最終更新日: 2024-01-10) |
| 主引用文献 | Faille, A.,Gavalda, S.,Slama, N.,Lherbet, C.,Maveyraud, L.,Guillet, V.,Laval, F.,Quemard, A.,Mourey, L.,Pedelacq, J.D. Insights into Substrate Modification by Dehydratases from Type I Polyketide Synthases. J. Mol. Biol., 429:1554-1569, 2017 Cited by PubMed Abstract: Dehydration reactions play a crucial role in the de novo biosynthesis of fatty acids and a wide range of pharmacologically active polyketide natural products with strong emphasis on human medicine. The type I polyketide synthase PpsC from Mycobacterium tuberculosis catalyzes key biosynthetic steps of lipid virulence factors phthiocerol dimycocerosates and phenolic glycolipids. Given the insolubility of the natural C-C fatty acyl substrate of the PpsC dehydratase (DH) domain, we investigated its structure-function relationships in the presence of shorter surrogate substrates. Since most enzymes belonging to the (R)-specific enoyl hydratase/hydroxyacyl dehydratase family conduct the reverse hydration reaction in vitro, we have determined the X-ray structures of the PpsC DH domain, both unliganded (apo) and in complex with trans-but-2-enoyl-CoA or trans-dodec-2-enoyl-CoA derivatives. This study provides for the first time a snapshot of dehydratase-ligand interactions following a hydration reaction. Our structural analysis allowed us to identify residues essential for substrate binding and activity. The structural comparison of the two complexes also sheds light on the need for long acyl chains for this dehydratase to carry out its function, consistent with both its in vitro catalytic behavior and the physiological role of the PpsC enzyme. PubMed: 28377293DOI: 10.1016/j.jmb.2017.03.026 主引用文献が同じPDBエントリー |
| 実験手法 | X-RAY DIFFRACTION (2.9 Å) |
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