Akhter Tania, Sawada Natsumi, Yamaguchi Masayoshi
Laboratory of Endocrinology and Molecular Metabolism, Graduate School of Nutritional Sciences, University of Shizuoka, Shizuoka 422-8526, Japan.
Int J Mol Med. 2006 Jul;18(1):171-6.
The role of regucalcin, a regulatory protein in intracellular signaling system, in the regulation of Ca2+-ATPase activity in rat heart mitochondria was investigated. Mitochondrial Ca2+-ATPase activity was significantly increased by increasing concentrations of CaCl2 (2.5-50 microM). An increase in the enzyme activity was saturated at 50 microM CaCl2. The addition of regucalcin (10(-11)-10(-8) M) in the enzyme reaction mixture caused a significant increase in Ca2+-ATPase activity in heart mitochondria in the presence of 50 microM CaCl2. Regucalcin did not have a significant effect on mitochondrial Mg2+-ATPase activity. Regucalcin (10(-9) M) did not have a significant effect on Ca2+-ATPase activity in the presence of digitonin (10(-3) or 10(-2) %), which is a solubilization effect on membranous lipids. The effect of regucalcin in increasing mitochondrial Ca2+-ATPase activity was not observed in the presence of ruthenium red (10(-7) M) or lanthanum chloride (10(-7) M), which is an inhibitor of Ca2+ uniporter. The effect of regucalcin (10(-9) M) in increasing mitochondrial Ca2+-ATPase activity was not significantly enhanced in the presence of calmodulin (5 microg/ml) or dibutyryl cyclic AMP (10(-4) M), which is an intracellular signaling factor that can cause a significant increase in the enzyme activity. Mitochondrial regucalcin localization was significantly increased in the heart of regucalcin transgenic rats as compared with that of normal rats using Western blot analysis. Ca2+-ATPase activity was significantly increased in the heart mitochondria of regucalcin transgenic rats. This study demonstrates that regucalcin has an activating effect on Ca2+-ATPase in rat heart mitochondria, suggesting its role in the regulation of heart mitochondrial function.
研究了细胞内信号系统中的调节蛋白调钙素在大鼠心脏线粒体中对Ca2+-ATP酶活性调节的作用。随着氯化钙浓度(2.5 - 50微摩尔)的增加,线粒体Ca2+-ATP酶活性显著升高。在50微摩尔氯化钙时,酶活性增加达到饱和。在酶反应混合物中加入调钙素(10^(-11) - 10^(-8)摩尔),在存在50微摩尔氯化钙的情况下,心脏线粒体中的Ca2+-ATP酶活性显著增加。调钙素对线粒体Mg2+-ATP酶活性没有显著影响。在存在洋地黄皂苷(10^(-3)或10^(-2)%)的情况下,调钙素(10^(-9)摩尔)对Ca2+-ATP酶活性没有显著影响,洋地黄皂苷对膜脂有增溶作用。在存在钌红(10^(-7)摩尔)或氯化镧(10^(-7)摩尔)(Ca2+单向转运体抑制剂)的情况下,未观察到调钙素增加线粒体Ca2+-ATP酶活性的作用。在存在钙调蛋白(5微克/毫升)或二丁酰环磷腺苷(10^(-4)摩尔)(可使酶活性显著增加的细胞内信号因子)的情况下,调钙素(10^(-9)摩尔)增加线粒体Ca2+-ATP酶活性的作用未显著增强。使用蛋白质免疫印迹分析表明,与正常大鼠相比,调钙素转基因大鼠心脏中的线粒体调钙素定位显著增加。调钙素转基因大鼠心脏线粒体中的Ca2+-ATP酶活性显著增加。本研究表明,调钙素对大鼠心脏线粒体中的Ca2+-ATP酶具有激活作用,提示其在心脏线粒体功能调节中的作用。