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Functional analysis of the copper-dependent quercetin 2,3-dioxygenase. 2. X-ray absorption studies of native enzyme and anaerobic complexes with the substrates quercetin and myricetin

机译:铜依赖性槲皮素2,3-二加氧酶的功能分析。 2.天然酶和厌氧复合物与槲皮素和杨梅素的底物的X射线吸收研究

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摘要

Quercetin 2,3-dioxygenase (2,3QD) is a mononuclear copper-dependent dioxygenase which catalyzes the cleavage of the heterocyclic ring of the flavonol quercetin (5,7,3',4'-tetrahydroxy flavonol) to produce 2-protocatechuoyl-phloroglucinol carboxylic acid and carbon monoxide. In this study, X-ray absorption spectroscopy has been used to characterize the local structural environment of the Cu2+ center of Aspergillus japonicus 2,3QD. Analysis of the EXAFS region of native 2,3QD at functionally relevant pH (pH 6.0) indicates an active site equally well-described by either four or five ligands (3N(His) + 1-2O) at an average distance of 2.00 Å. Bond valence sum analysis confirms that the best model is somewhere between the two. When, however, 2,3QD is anaerobically complexed with its natural substrate quercetin, the copper environment undergoes a transition to a five-coordinated cage, which is also best modeled by a single shell of N/O scatterers at the average distance of 2.00 Å. This coordination is independently confirmed by the anaerobic complex with myricetin (5'-hydroxy quercetin). XANES analysis confirms that substrate binding does not reduce the Cu2+ ion. The present study gives the first direct insights into the coordination chemistry of the enzyme complexed with its substrates. It suggests that activation for O2 attack is achieved by monodentate substrate complexation to the copper ion through the 3-hydroxyl group. In addition, monodentate carboxylate ligation by the Glu73 side chain is likely to play a role in the fine-tuning of the equilibrium leading to the formation of the activated E·S complex.
机译:槲皮素2,3-二加氧酶(2,3QD)是一种单核铜依赖性双加氧酶,可催化黄酮槲皮素(5,7,3',4'-四羟基黄酮醇)的杂环裂解,生成2-protocatechuoyl-间苯三酚羧酸和一氧化碳。在这项研究中,X射线吸收光谱已被用来表征日本曲霉2,3QD的Cu2 +中心的局部结构环境。在功能相关的pH值(pH 6.0)下对天然2,3QD的EXAFS区域的分析表明,该活性位点由四个或五个配体(3N(His)+ 1-2O)均匀描述,平均距离为2.00。键合价和分析确认最佳模型在两者之间。但是,当2,3QD与其天然底物槲皮素厌氧复合时,铜环境经历了向五配位笼的过渡,这也最好由平均距离为2.00Å的N / O散射体的单个壳模拟。这种协同作用是通过与杨梅素(5'-羟基槲皮素)的厌氧复合物独立确认的。 XANES分析证实底物结合不会还原Cu2 +离子。本研究为复合酶及其底物的配位化学提供了直接的见解。这表明,通过3-齿羟基与铜离子的单齿底物络合可以实现对O2攻击的活化。另外,通过Glu73侧链的单齿羧酸酯连接可能在平衡的微调中起作用,导致形成活化的E·S络合物。

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