Schilling Oliver, Wenzel Nathan, Naylor Melissa, Vogel Andreas, Crowder Michael, Makaroff Christopher, Meyer-Klaucke Wolfram
EMBL Outstation Hamburg, Notkestrasse 85, 22603 Hamburg, Germany.
Biochemistry. 2003 Oct 14;42(40):11777-86. doi: 10.1021/bi034672o.
Glyoxalase II belongs to the metallo-beta-lactamase superfamily of proteins, possessing the characteristic dinuclear active site. Within this protein family, glyoxalase II from Arabidopsis thaliana is the first member to be isolated with significant amounts of iron, manganese, and zinc when being recombinantly produced in Escherichia coli. Enzyme preparations with different ratios of these three metals all yield k(cat)/K(M) values in the range of 1.5-1.9 s(-1) microM(-1) with the substrate S-d-lactoylglutathione. X-ray absorption spectroscopy reveals binding of all three metals to the dinuclear active site with 5-6-fold coordination consisting of 2.5 +/- 0.5 histidine and 2.5 +/- 0.5 oxygen ligands. This model does not distinguish site-specific or distributed binding. The metal-metal distance is determined to be 3.18 +/- 0.06 A. Electron paramagnetic resonance spectroscopy gives evidence for several different types of dimetal sites, including spin-coupled Fe(III)Fe(II), Fe(III)Zn(II), and Mn(II)Mn(II) centers. The metal-ligand distances measured by X-ray absorption spectroscopy vary depending on the metal type and comply with their element-specific, characteristic values. This reflects a high degree of structural flexibility within the glyoxalase II dinuclear active site, which is considered as the structural basis for its broad metal selectivity.
乙二醛酶II属于金属β-内酰胺酶超家族蛋白,具有特征性的双核活性位点。在这个蛋白家族中,拟南芥的乙二醛酶II是第一个在大肠杆菌中重组表达时能分离出大量铁、锰和锌的成员。含有这三种金属不同比例的酶制剂与底物S-d-乳酰谷胱甘肽反应时,其催化常数与米氏常数之比(k(cat)/K(M))均在1.5 - 1.9 s(-1) microM(-1)范围内。X射线吸收光谱显示,所有这三种金属都与双核活性位点结合,形成5 - 6重配位,由2.5 ± 0.5个组氨酸和2.5 ± 0.5个氧配体组成。该模型无法区分位点特异性结合或分布式结合。金属 - 金属距离测定为3.18 ± 0.06 Å。电子顺磁共振光谱证明存在几种不同类型的双金属位点,包括自旋耦合的Fe(III)Fe(II)、Fe(III)Zn(II)和Mn(II)Mn(II)中心。通过X射线吸收光谱测量的金属 - 配体距离因金属类型而异,并符合其元素特异性特征值。这反映了乙二醛酶II双核活性位点具有高度的结构灵活性,这被认为是其广泛金属选择性的结构基础。