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2WJ4

CRYSTAL STRUCTURE OF THE COFACTOR-DEVOID 1-H-3-HYDROXY-4- OXOQUINALDINE 2,4-DIOXYGENASE (HOD) FROM ARTHROBACTER NITROGUAJACOLICUS RU61A ANAEROBICALLY COMPLEXED WITH ITS NATURAL SUBSTRATE 1-H-3-HYDROXY-4-OXOQUINALDINE

2WJ4 の概要
エントリーDOI10.2210/pdb2wj4/pdb
関連するPDBエントリー2WJ3 2WJ6 2WM2
分子名称1H-3-HYDROXY-4-OXOQUINALDINE 2,4-DIOXYGENASE, GLYCEROL, POTASSIUM ION, ... (6 entities in total)
機能のキーワードoxidoreductase, alpha/beta hydrolase
由来する生物種ARTHROBACTER NITROGUAJACOLICUS
タンパク質・核酸の鎖数4
化学式量合計130126.95
構造登録者
Steiner, R.A. (登録日: 2009-05-20, 公開日: 2010-01-26, 最終更新日: 2024-11-20)
主引用文献Steiner, R.A.,Janssen, H.J.,Roversi, P.,Oakley, A.J.,Fetzner, S.
Structural Basis for Cofactor-Independent Dioxygenation of N-Heteroaromatic Compounds at the {Alpha}/{Beta}-Hydrolase Fold.
Proc.Natl.Acad.Sci.USA, 107:657-, 2010
Cited by
PubMed Abstract: Enzymatic catalysis of oxygenation reactions in the absence of metal or organic cofactors is a considerable biochemical challenge. The CO-forming 1-H-3-hydroxy-4-oxoquinaldine 2,4-dioxygenase (HOD) from Arthrobacter nitroguajacolicus Rü61a and 1-H-3-hydroxy-4-oxoquinoline 2,4-dioxygenase (QDO) from Pseudomonas putida 33/1 are homologous cofactor-independent dioxygenases involved in the breakdown of N-heteroaromatic compounds. To date, they are the only dioxygenases suggested to belong to the alpha/beta-hydrolase fold superfamily. Members of this family typically catalyze hydrolytic processes rather than oxygenation reactions. We present here the crystal structures of both HOD and QDO in their native state as well as the structure of HOD in complex with its natural 1-H-3-hydroxy-4-oxoquinaldine substrate, its N-acetylanthranilate reaction product, and chloride as dioxygen mimic. HOD and QDO are structurally very similar. They possess a classical alpha/beta-hydrolase fold core domain additionally equipped with a cap domain. Organic substrates bind in a preorganized active site with an orientation ideally suited for selective deprotonation of their hydroxyl group by a His/Asp charge-relay system affording the generation of electron-donating species. The "oxyanion hole" of the alpha/beta-hydrolase fold, typically employed to stabilize the tetrahedral intermediate in ester hydrolysis reactions, is utilized here to host and control oxygen chemistry, which is proposed to involve a peroxide anion intermediate. Product release by proton back transfer from the catalytic histidine is driven by minimization of intramolecular charge repulsion. Structural and kinetic data suggest a nonnucleophilic general-base mechanism. Our analysis provides a framework to explain cofactor-independent dioxygenation within a protein architecture generally employed to catalyze hydrolytic reactions.
PubMed: 20080731
DOI: 10.1073/PNAS.0909033107
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (2.1 Å)
構造検証レポート
Validation report summary of 2wj4
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件を2025-12-31に公開中

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