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4CFS

CRYSTAL STRUCTURE OF THE COFACTOR-DEVOID 1-H-3-HYDROXY-4- OXOQUINALDINE 2,4-DIOXYGENASE (HOD) CATALYTICALLY INACTIVE H251A VARIANT COMPLEXED WITH ITS NATURAL SUBSTRATE 1-H-3-HYDROXY-4- OXOQUINALDINE

4CFS の概要
エントリーDOI10.2210/pdb4cfs/pdb
分子名称1-H-3-HYDROXY-4-OXOQUINALDINE 2,4-DIOXYGENASE, POTASSIUM ION, 3-HYDROXY-2-METHYLQUINOLIN-4(1H)-ONE, ... (5 entities in total)
機能のキーワードalpha-beta hydrolase complex, oxidoreductase, dioxygenase, cofactor-devoid
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134336.52
構造登録者
Bui, S.,Steiner, R.A. (登録日: 2013-11-19, 公開日: 2013-12-04, 最終更新日: 2024-10-23)
主引用文献Hernandez-Ortega, A.,Quesne, M.G.,Bui, S.,Heuts, D.P.,Steiner, R.A.,Heyes, D.J.,De Visser, S.P.,Scrutton, N.S.
Origin of the Proton-Transfer Step in the Cofactor-Free 1-H-3-Hydroxy-4-Oxoquinaldine 2,4- Dioxygenase: Effect of the Basicity of an Active Site His Residue.
J.Biol.Chem., 289:8620-, 2014
Cited by
PubMed Abstract: Dioxygenases catalyze a diverse range of chemical reactions that involve the incorporation of oxygen into a substrate and typically use a transition metal or organic cofactor for reaction. Bacterial (1H)-3-hydroxy-4-oxoquinaldine 2,4-dioxygenase (HOD) belongs to a class of oxygenases able to catalyze this energetically unfavorable reaction without any cofactor. In the quinaldine metabolic pathway, HOD breaks down its natural N-heteroaromatic substrate using a mechanism that is still incompletely understood. Experimental and computational approaches were combined to study the initial step of the catalytic cycle. We have investigated the role of the active site His-251/Asp-126 dyad, proposed to be involved in substrate hydroxyl group deprotonation, a critical requirement for subsequent oxygen reaction. The pH profiles obtained under steady-state conditions for the H251A and D126A variants show a strong pH effect on their kcat and kcat/Km constants, with a decrease in kcat/Km of 5500- and 9-fold at pH 10.5, respectively. Substrate deprotonation studies under transient-state conditions show that this step is not rate-limiting and yield a pKa value of ∼ 7.2 for WT HOD. A large solvent isotope effect was found, and the pKa value was shifted to ∼ 8.3 in D2O. Crystallographic and computational studies reveal that the mutations have a minor effect on substrate positioning. Computational work shows that both His-251 and Asp-126 are essential for the proton transfer driving force of the initial reaction. This multidisciplinary study offers unambiguous support to the view that substrate deprotonation, driven by the His/Asp dyad, is an essential requirement for its activation.
PubMed: 24482238
DOI: 10.1074/JBC.M113.543033
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (1.94 Å)
構造検証レポート
Validation report summary of 4cfs
検証レポート(詳細版)ダウンロードをダウンロード

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件を2025-12-31に公開中

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