Kooter Ingeborg M, Steiner Roberto A, Dijkstra Bauke W, van Noort Paula I, Egmond Maarten R, Huber Martina
Unilever Research Vlaardingen, The Netherlands.
Eur J Biochem. 2002 Jun;269(12):2971-9. doi: 10.1046/j.1432-1033.2002.02973.x.
Quercetin 2,3-dioxygenase (2,3QD) is a copper-containing dioxygenase that catalyses the oxidation of the flavonol quercetin to 2-protocatechuoylphloroglucinol carboxylic acid with concomitant production of carbon monoxide. In contrast to iron dioxygenases, very little is known about copper dioxygenases. We have characterized 2,3QD from the fungus Aspergillus japonicus by electron paramagnetic resonance spectroscopy (EPR). At pH 6.0, 2,3QD shows a mixture of two EPR species. The major form has parameters typical of type 2 Cu sites (g// = 2.330, A// = 13.7 mT), the minor one has a more distorted geometry (g// = 2.290, A// = 12.5 mT). Anaerobic addition of the substrate quercetin results in a different, single species EPR spectrum with g// = 2.336, A// = 11.4 mT, parameters, which are in-between those of the type 2 and type 1 Cu sites in the Peisach-Blumberg (g// vs. A//) plot. After turnover, a new EPR signal is observed, which is ascribed to the carboxylic acid ester product complex. This spectrum is similar to that of the native enzyme at pH 10.0 and has g-tensor parameters suggesting a trigonal bipyramidal site. Of a variety of flavonoids studied, only flavonols are able to bind to the copper centre of 2,3QD. Nine flavonols with different hydroxylation patterns at the A- and B-ring have been analysed. They cluster in two different regions of the Peisach-Blumberg plot and show that the presence of a 5-OH group has a large effect on the A// parameter. Several differences are noted between A. japonicus 2,3QD and the enzyme from A. niger German Collection of Microorganisms 821.
槲皮素2,3 -双加氧酶(2,3QD)是一种含铜双加氧酶,它催化黄酮醇槲皮素氧化为2 -原儿茶酰基间苯三酚羧酸,并伴随产生一氧化碳。与铁双加氧酶相比,人们对铜双加氧酶的了解非常少。我们通过电子顺磁共振光谱(EPR)对来自日本曲霉的2,3QD进行了表征。在pH 6.0时,2,3QD显示出两种EPR物种的混合物。主要形式具有典型的2型铜位点参数(g// = 2.330,A// = 13.7 mT),次要形式的几何结构更扭曲(g// = 2.290,A// = 12.5 mT)。厌氧添加底物槲皮素会产生不同的单一物种EPR光谱,g// = 2.336,A// = 11.4 mT,这些参数介于Peisach - Blumberg图中2型和1型铜位点的参数之间。周转后,观察到一个新的EPR信号,这归因于羧酸酯产物复合物。该光谱与pH 10.0时天然酶的光谱相似,其g张量参数表明是一个三角双锥位点。在所研究的多种黄酮类化合物中,只有黄酮醇能够与2,QD的铜中心结合。分析了9种在A环和B环具有不同羟基化模式的黄酮醇。它们聚集在Peisach - Blumberg图的两个不同区域,表明5 - OH基团的存在对A//参数有很大影响。在日本曲霉2,3QD和来自黑曲霉德国微生物保藏中心821的酶之间注意到了几个差异。