Lakshmi G Y
Indian J Exp Biol. 1989 Oct;27(10):903-6.
Effects of lithium in vivo and in vitro on the two molecular forms of Na+,K(+)-ATPase in rat brain were investigated. Inhibition by strophanthidin, affinity to monovalent cations and cellular localization of the enzyme were used to differentiate the two molecular forms. K+ dependent p-nitrophenylphosphatase activity and strophanthidin inhibition studies revealed selective increase in the activity of low affinity form but not high affinity form of the enzyme following lithium treatment. Na+ sensitivity of neither forms of Na+,K(+)-ATPase was changed but K+ sensitivity of low affinity form was increased due to lithium. Lithium showed biphasic effects on low affinity form of the enzyme; activation at low concentration and inhibition at high concentration. The results suggest that lithium in vivo regulates the concentration of extra cellular potassium by selectively acting at K+ site of low affinity form of the enzyme (astroglial) but not on high affinity form (neuronal enzyme) and leading to changes in neuronal depolarization.
研究了锂在体内和体外对大鼠脑中Na +,K(+)-ATP酶两种分子形式的影响。利用毒毛花苷抑制、对单价阳离子的亲和力以及该酶的细胞定位来区分这两种分子形式。K +依赖性对硝基苯磷酸酶活性和毒毛花苷抑制研究表明,锂处理后,该酶低亲和力形式而非高亲和力形式的活性选择性增加。两种形式的Na +,K(+)-ATP酶对Na +的敏感性均未改变,但低亲和力形式对K +的敏感性因锂而增加。锂对该酶的低亲和力形式表现出双相作用;低浓度时激活,高浓度时抑制。结果表明,体内锂通过选择性作用于该酶低亲和力形式(星形胶质细胞)的K +位点而非高亲和力形式(神经元酶)来调节细胞外钾浓度,并导致神经元去极化的变化。