Reeves John P, Condrescu Madalina
Department of Pharmacology and Physiology, University of Medicine and Dentistry of New Jersey-New Jersey Medical School, PO Box 1709, 185 South Orange Ave., Newark, NJ 07101-1709, USA.
Am J Physiol Cell Physiol. 2003 Oct;285(4):C763-70. doi: 10.1152/ajpcell.00168.2003. Epub 2003 May 28.
La3+ uptake was measured in fura 2-loaded Chinese hamster ovary cells expressing the bovine cardiac Na+/Ca2+ exchanger (NCX1.1). La3+ was taken up by the cells after an initial lag phase of 50-60 s and achieved a steady state within 5-6 min. Neonatal cardiac myocytes accumulated La3+ in a similar manner. La3+ uptake was due to the activity of the exchanger, because no uptake was seen in nontransfected cells or in transfected cells that had been treated with gramicidin to remove cytosolic Na+. The low rate of La3+ uptake during the lag period resulted from insufficient cytosolic Ca2+ to activate the exchanger at its regulatory sites, as shown by the following observations. La3+ uptake occurred without a lag period in cells expressing a mutant of NCX1.1 that does not exhibit regulatory activation by cytosolic Ca2+. The rate of La3+ uptake by wild-type cells was increased, and the lag phase was reduced or eliminated, when the cytosolic Ca2+ concentration was increased before initiating La3+ uptake. La3+ could substitute for Ca2+ at very low concentrations to activate exchange activity. Thus preloading cells expressing NCX1.1 with a small quantity of La3+ increased the rate of exchange-mediated Ca2+ influx by 20-fold; in contrast, cytosolic La3+ partially inhibited Ca2+ uptake by the regulation-deficient mutant. With an estimated KD of 30 pM for the binding of La3+ to fura 2, we conclude that cytosolic La3+ activates exchange activity at picomolar concentrations. We speculatively suggest that endogenous trace metals might activate exchange activity under physiological conditions.
在表达牛心脏钠钙交换体(NCX1.1)的用fura 2负载的中国仓鼠卵巢细胞中测量了La3+摄取。La3+在最初50 - 60秒的延迟期后被细胞摄取,并在5 - 6分钟内达到稳态。新生心肌细胞以类似方式积累La3+。La3+摄取归因于交换体的活性,因为在未转染细胞或用短杆菌肽处理以去除胞质钠的转染细胞中未观察到摄取。延迟期内La3+摄取速率低是由于胞质Ca2+不足以在其调节位点激活交换体,如下列观察结果所示。在表达不表现出由胞质Ca2+调节激活的NCX1.1突变体的细胞中,La3+摄取无延迟期。当在开始La3+摄取之前增加胞质Ca2+浓度时,野生型细胞的La3+摄取速率增加,延迟期缩短或消除。La3+在非常低的浓度下可以替代Ca2+来激活交换活性。因此,用少量La3+预加载表达NCX1.1的细胞可使交换介导的Ca2+内流速率增加20倍;相反,胞质La3+部分抑制缺乏调节的突变体对Ca2+的摄取。据估计La3+与fura 2结合的KD为30 pM,我们得出结论,胞质La3+在皮摩尔浓度下激活交换活性。我们推测内源性痕量金属可能在生理条件下激活交换活性。