Leone F A, Ciancaglini P, Pizauro J M
Departamento de Química, Faculdade de Filosofia, Ciências e Letras, Universidade de São Paulo, Ribeirão Preto, Brasil.
J Inorg Biochem. 1997 Nov 1;68(2):123-7. doi: 10.1016/s0162-0134(97)00047-0.
Rat osseous plate alkaline phosphatase is a metalloenzyme with two binding sites for Zn2+ (sites I and III) and one for Mg2+ (site II). This enzyme is stimulated synergistically by Zn2+ and Mg2+ (Ciancaglini et al., 1992) and also by Mn2+ (Leone et al., 1995) and Co2+ (Ciancaglini et al., 1995). This study was aimed to investigate the modulation of enzyme activity by Ca2+. In the absence of Zn2+ and Mg2+, Ca2+ had no effects on the activity of Chelex-treated, Polidocanol-solubilized enzyme. However, in the presence of 10 microM MgCl2, increasing concentration of Ca2+ were inhibitory, suggesting the displacement of Mg2+ from the magnesium-reconstituted enzyme. For calcium-reconstituted enzyme, Zn2+ concentrations up to 0.1 microM were stimulatory, increasing specific activity from 130 U/mg to about 240 U/mg with a K0.5 = 8.5 nM. Above 0.1 microM Zn2+ exerted a strong inhibitory effect and concentrations of Ca2+ up to 1 mM were not enough to counteract this inhibition, indicating that Ca2+ was easily displaced by Zn2+. At fixed concentrations of Ca2+, increasing concentrations of Mg2+ increased the enzyme specific activity from 472 U/mg to about 547 U/mg, but K0.5 values were significantly affected (from 4.4 microM to 38.0 microM). The synergistic effects observed for the activity of Ca2+ plus magnesium-reconstituted enzyme, suggested that these two ions bind to the different sites. A model to explain the effect of Ca2+ on the activity of the enzyme is presented.
大鼠骨板碱性磷酸酶是一种金属酶,有两个锌离子结合位点(位点I和III)和一个镁离子结合位点(位点II)。该酶受到锌离子和镁离子的协同刺激(Ciancaglini等人,1992年),也受到锰离子(Leone等人,1995年)和钴离子(Ciancaglini等人,1995年)的刺激。本研究旨在探讨钙离子对酶活性的调节作用。在没有锌离子和镁离子的情况下,钙离子对经螯合树脂处理、聚多卡醇增溶的酶的活性没有影响。然而,在存在10微摩尔氯化镁的情况下,钙离子浓度的增加具有抑制作用,这表明镁离子从重新构建的镁酶中被取代。对于重新构建的钙酶,锌离子浓度高达0.1微摩尔时具有刺激作用,比活性从130 U/mg增加到约240 U/mg,K0.5 = 8.5 nM。锌离子浓度高于0.1微摩尔时具有强烈的抑制作用,高达1毫摩尔的钙离子浓度不足以抵消这种抑制作用,这表明钙离子很容易被锌离子取代。在固定的钙离子浓度下,镁离子浓度的增加使酶的比活性从472 U/mg增加到约547 U/mg,但K0.5值受到显著影响(从4.4微摩尔变为38.0微摩尔)。观察到的钙离子加重新构建的镁酶活性的协同效应表明,这两种离子结合到不同的位点。本文提出了一个解释钙离子对酶活性影响的模型。