Sellin S, Eriksson L E, Aronsson A C, Mannervik B
J Biol Chem. 1983 Feb 25;258(4):2091-3.
Co(II)-glyoxalase I has been prepared by reactivation of apoenzyme from human erythrocytes with Co2+. The visible absorption spectrum showed maxima at 493 and 515 nm and shoulders at 465 and 615 nm. The absorption coefficients at 493 and 515 nm were 35 and 33 M-1 cm-1/cobalt ion, respectively; i.e. 70 and 66 M-1 cm-1 for the dimeric metalloprotein. The product of the enzymatic reaction, S-D-lactoylglutathione, although binding to Co(II)-glyoxalase I, had no demonstrable effect on the visible absorption spectrum, indicating binding outside the first coordination sphere of the metal. The EPR spectrum at 3.9 K was characterized by g1 approximately 6.6, g2 approximately 3.0, and g3 approximately 2.5, and eight hyperfine lines with A1 = 0.025 cm-1. Binding of the strong competitive inhibitor S-p-bromobenzylglutathione to Co(II)-glyoxalase I gave three g values: 6.3, 3.4, and 2.5, indicating a conformational change affecting the environment of the metal ion. Both optical and EPR spectra strongly suggest a high spin Co2+ with octahedral coordination in the active site of the enzyme. The similarities in kinetic properties between native Zn(II)-glyoxalase I and enzyme substituted with Mg2+, Mn2+, or Co2+ is consistent with the view that these enzyme forms have the same metal coordination in the protein.
通过用Co²⁺重新激活人红细胞中的脱辅基酶制备了Co(II)-乙二醛酶I。可见吸收光谱在493和515nm处有最大值,在465和615nm处有肩峰。在493和515nm处的吸收系数分别为35和33M⁻¹cm⁻¹/钴离子;即二聚体金属蛋白的吸收系数为70和66M⁻¹cm⁻¹。酶促反应的产物S-D-乳酰谷胱甘肽虽然与Co(II)-乙二醛酶I结合,但对可见吸收光谱没有明显影响,表明其结合在金属的第一配位球之外。在3.9K下的电子顺磁共振光谱的特征为g1约为6.6,g2约为3.0,g3约为2.5,以及八条超精细线,A1 = 0.025cm⁻¹。强竞争性抑制剂S-p-溴苄基谷胱甘肽与Co(II)-乙二醛酶I的结合给出了三个g值:6.3、3.4和2.5,表明构象变化影响了金属离子的环境。光学光谱和电子顺磁共振光谱都强烈表明在酶的活性位点存在具有八面体配位的高自旋Co²⁺。天然Zn(II)-乙二醛酶I与用Mg²⁺、Mn²⁺或Co²⁺取代的酶在动力学性质上的相似性与这些酶形式在蛋白质中具有相同金属配位的观点一致。