DiPolo R, Beaugé L
Centro de Biofísica y Bioquímica, Instituto Venezolano de Investigaciones Científicas, Caracas.
Am J Physiol. 1994 May;266(5 Pt 1):C1382-91. doi: 10.1152/ajpcell.1994.266.5.C1382.
We have proposed that in squid axons MgATP stimulation of Na-Ca exchange involves a phosphorylation-dephosphorylation process catalyzed by a kinase-phosphatase system. In the present work, we used vanadate as a tool to gather further evidence about the mechanism of metabolic control of the Na-Ca exchanger in internally dialyzed and voltage-clamped squid axons. Vanadate, at concentrations up to 100 microM, stimulated extracellular Na (Nao)-dependent Ca efflux only in the presence of MgATP but failed to do so when the axons were dialyzed with the nonhydrolyzable ATP analogue beta, gamma-methyleneadenosine 5'-triphosphate or with CrATP, a MgATP analogue that completely abolishes MgATP stimulation of the Na-Ca exchange. In axons fully activated by Mg-adenosine 5'-O-(3-thiotriphosphate), vanadate had no effect on Na-Ca exchange. The dose-response curve for vanadate stimulation followed Michaelian kinetics with a Km of 5.6 +/- 0.4 microM and a maximum velocity of 216 +/- 10 fmol.cm-2.s-1 (intracellular Ca concentration = 0.8 microM). This coincides with the high affinity of vanadate in inhibiting the in vitro phosphatase activity of an alkaline phosphatase extracted from rat liver. In addition, vanadate increased fivefold the apparent affinity for MgATP (Km from 220 +/- 14 to 40 +/- 4 microM). Concentrations of vanadate in the millimolar range inhibited the MgATP-stimulated Na-Ca exchange (apparent Ki of 5.7 +/- 0.3 mM) and the in vitro phosphorylation by the catalytic subunit of a adenosine 3',5'-cyclic monophosphate protein kinase (apparent Ki 2.64 +/- 0.04 mM). We conclude that MgATP stimulation of Na-Ca exchange is proportional to the levels of phosphorylation that result from the balance of the activity of a kinase and a phosphatase activity.
我们曾提出,在鱿鱼轴突中,MgATP对钠钙交换的刺激涉及由激酶-磷酸酶系统催化的磷酸化-去磷酸化过程。在本研究中,我们使用钒酸盐作为工具,以收集更多关于在内部透析和电压钳制的鱿鱼轴突中钠钙交换体代谢控制机制的证据。钒酸盐浓度高达100微摩尔时,仅在存在MgATP的情况下刺激细胞外钠(Nao)依赖性钙外流,但当轴突用不可水解的ATP类似物β,γ-亚甲基腺苷5'-三磷酸或CrATP(一种完全消除MgATP对钠钙交换刺激的MgATP类似物)透析时则不能刺激。在用Mg-腺苷5'-O-(3-硫代三磷酸)完全激活的轴突中,钒酸盐对钠钙交换没有影响。钒酸盐刺激的剂量反应曲线遵循米氏动力学,Km为5.6±0.4微摩尔,最大速度为216±10飞摩尔·厘米-2·秒-1(细胞内钙浓度=0.8微摩尔)。这与钒酸盐对从大鼠肝脏提取的碱性磷酸酶的体外磷酸酶活性的高亲和力相吻合。此外,钒酸盐使对MgATP的表观亲和力增加了五倍(Km从220±14变为40±4微摩尔)。毫摩尔范围内的钒酸盐浓度抑制了MgATP刺激的钠钙交换(表观Ki为5.7±0.3毫摩尔)和由环磷酸腺苷蛋白激酶催化亚基进行的体外磷酸化(表观Ki为2.64±0.04毫摩尔)。我们得出结论,MgATP对钠钙交换的刺激与激酶活性和磷酸酶活性平衡所导致的磷酸化水平成正比。