Kallio J P, Auer S, Jänis J, Andberg M, Kruus K, Rouvinen J, Koivula A, Hakulinen N
Department of Chemistry, University of Joensuu, P.O. Box 111, FIN-80101 Joensuu, Finland.
J Mol Biol. 2009 Oct 2;392(4):895-909. doi: 10.1016/j.jmb.2009.06.053. Epub 2009 Jun 27.
Melanocarpus albomyces laccase crystals were soaked with 2,6-dimethoxyphenol, a common laccase substrate. Three complex structures from different soaking times were solved. Crystal structures revealed the binding of the original substrate and adducts formed by enzymatic oxidation of the substrate. The dimeric oxidation products were identified by mass spectrometry. In the crystals, a 2,6-dimethoxy-p-benzoquinone and a C-O dimer were observed, whereas a C-C dimer was the main product identified by mass spectrometry. Crystal structures demonstrated that the substrate and/or its oxidation products were bound in the pocket formed by residues Ala191, Pro192, Glu235, Leu363, Phe371, Trp373, Phe427, Leu429, Trp507 and His508. Substrate and adducts were hydrogen-bonded to His508, one of the ligands of type 1 copper. Therefore, this surface-exposed histidine most likely has a role in electron transfer by laccases. Based on our mutagenesis studies, the carboxylic acid residue Glu235 at the bottom of the binding site pocket is also crucial in the oxidation of phenolics. Glu235 may be responsible for the abstraction of a proton from the OH group of the substrate and His508 may extract an electron. In addition, crystal structures revealed a secondary binding site formed through weak dimerization in M. albomyces laccase molecules. This binding site most likely exists only in crystals, when the Phe427 residues are packed against each other.
将黑色素菌漆酶晶体用2,6 - 二甲氧基苯酚(一种常见的漆酶底物)进行浸泡。解析了不同浸泡时间下的三种复合物结构。晶体结构揭示了原始底物的结合以及底物经酶促氧化形成的加合物。通过质谱鉴定了二聚体氧化产物。在晶体中,观察到了一种2,6 - 二甲氧基对苯醌和一种C - O二聚体,而通过质谱鉴定的主要产物是一种C - C二聚体。晶体结构表明,底物和/或其氧化产物结合在由丙氨酸191、脯氨酸192、谷氨酸235、亮氨酸363、苯丙氨酸371、色氨酸373、苯丙氨酸427、亮氨酸429、色氨酸507和组氨酸508残基形成的口袋中。底物和加合物通过氢键与1型铜的配体之一组氨酸508相连。因此,这种表面暴露的组氨酸很可能在漆酶的电子转移中起作用。基于我们的诱变研究,结合位点口袋底部的羧酸残基谷氨酸235在酚类氧化中也至关重要。谷氨酸235可能负责从底物的OH基团中提取一个质子,而组氨酸508可能提取一个电子。此外,晶体结构揭示了黑色素菌漆酶分子中通过弱二聚化形成的一个二级结合位点。这个结合位点很可能仅在晶体中存在,此时苯丙氨酸427残基相互堆积。