Takahashi H, Yamaguchi M
Laboratory of Metabolism and Endocrinology, Graduate School of Nutritional Sciences, University of Shizuoka, Japan.
Mol Cell Biochem. 1993 Jul 21;124(2):169-74. doi: 10.1007/BF00929209.
The effect of various metals and regucalcin, a calcium-binding protein isolated from rat liver cytosol, on (Ca(2+)-Mg2+)-ATPase activity in the plasma membranes of rat liver was investigated. Of various metals (Zn2+, Cu2+, Ni2+, Mn2+, Co2+ and Al3+; 100 microM as a final concentration), Mn2+ and Co2+ increased markedly (Ca(2+)-Mg2+)-ATPase activity, while other metals had no effect. When Ca2+ was not added into enzyme reaction mixture, Mn2+ and Co2+ (25-100 microM) did not significantly increase the enzyme activity, indicating that heavy metals act on Ca(2+)-stimulated phosphorylation of the enzyme. Meanwhile, regucalcin (0.25-1.0 microM) caused a remarkable elevation of (Ca(2+)-Mg2+)-ATPase activity. This increase was not inhibited by the presence of 100 microM vanadate, although the effects of Mn2+ and Co2+ (100 microM) were inhibited by vanadate. Also, the inhibition of the Mn2+ and Co2+ effects by vanadate was not seen in the presence of regucalcin. Moreover, regucalcin (0.5 microM) increased significantly the enzyme activity in the absence of Ca2+. This effect of regulcalcin was not altered by increasing concentrations of Ca2+ added, indicating that the regucalcin effect does not depend on Ca2+. The present results suggest that regucalcin activates directly (Ca(2+)-Mg2+)-ATPase in liver plasma membranes, and that the activation is not involved in the Ca(2+)-dependent phosphorylation of the enzyme.
研究了多种金属以及从大鼠肝脏细胞质溶胶中分离出的钙结合蛋白调钙素对大鼠肝脏质膜中(Ca²⁺ - Mg²⁺)-ATP酶活性的影响。在多种金属(Zn²⁺、Cu²⁺、Ni²⁺、Mn²⁺、Co²⁺和Al³⁺;终浓度为100μM)中,Mn²⁺和Co²⁺显著提高了(Ca²⁺ - Mg²⁺)-ATP酶活性,而其他金属则无此作用。当酶反应混合物中不添加Ca²⁺时,Mn²⁺和Co²⁺(25 - 100μM)不会显著提高酶活性,这表明重金属作用于该酶的Ca²⁺刺激的磷酸化过程。同时,调钙素(0.25 - 1.0μM)使(Ca²⁺ - Mg²⁺)-ATP酶活性显著升高。尽管100μM钒酸盐会抑制Mn²⁺和Co²⁺(100μM)的作用,但调钙素引起的这种增加不受100μM钒酸盐存在的抑制。此外,在有调钙素存在的情况下,钒酸盐对Mn²⁺和Co²⁺作用的抑制作用也未出现。而且,调钙素(0.5μM)在无Ca²⁺时显著提高了酶活性。添加的Ca²⁺浓度增加并不会改变调钙素的这种作用,这表明调钙素的作用不依赖于Ca²⁺。目前的结果表明,调钙素直接激活肝脏质膜中的(Ca²⁺ - Mg²⁺)-ATP酶,且这种激活不涉及该酶的Ca²⁺依赖性磷酸化过程。