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大鼠小肠基底外侧质膜中Na+/Ca2+交换的动力学特性。

Kinetic properties of Na+/Ca2+ exchange in basolateral plasma membranes of rat small intestine.

作者信息

Ghijsen W E, De Jong M D, Van Os C H

出版信息

Biochim Biophys Acta. 1983 Apr 21;730(1):85-94. doi: 10.1016/0005-2736(83)90320-6.

Abstract

The presence of an Na+/Ca2+ exchange system in basolateral plasma membranes from rat small intestinal epithelium has been demonstrated by studying Na+ gradient-dependent Ca2+ uptake and the inhibition of ATP-dependent Ca2+ accumulation by Na+. The presence of 75 mM Na+ in the uptake solution reduces ATP-dependent Ca2+ transport by 45%, despite the fact that Na+ does not affect Ca2+-ATPase activity. Preincubation of the membrane vesicles with ouabain or monensin reduces the Na+ inhibition of ATP-dependent Ca2+ uptake to 20%, apparently by preventing accumulation of Na+ in the vesicles realized by the Na+-pump.l It was concluded that high intravesicular Na+ competes with Ca2+ from intravesicular Ca2+ binding sites. In the presence of ouabain, the inhibition of ATP-dependent Ca2+ transport shows a sigmoidal dependence on the Na+ concentration, suggesting cooperative interaction between counter transport of at least two sodium ions for one calcium ion. The apparent affinity for Na+ is between 15 and 20 mM. Uptake of Ca2+ in the absence of ATP can be enhanced by an Na+ gradient (Na+ inside greater than Na+ outside). This Na+ gradient-dependent Ca2+ uptake is further stimulated by an inside positive membrane potential but abolished by monensin. The apparent affinity for Ca2+ of this system is below 1 microM. In contrast to the ATP-dependent Ca2+ transport, there is no significant difference in Na+ gradient-dependent Ca2+ uptake between basolateral vesicles from duodenum, midjejunum and terminal ileum. In duodenum the activity of ATP-driven Ca2+ uptake is 5-times greater than the greater than the Na+/Ca2+ exchange capacity but in the ileum both systems are of equal potency. Furthermore, the Na+/Ca2+ exchange mechanism is not subject to regulation by 1 alpha, 25-dihydroxy vitamin D-3, since repletion of vitamin D-deficient rats with this seco-steroid hormone does not influence the Na+/Ca2+ exchange system while it doubles the ATP-driven Ca2+ pump activity.

摘要

通过研究钠离子梯度依赖性钙离子摄取以及钠离子对ATP依赖性钙离子积累的抑制作用,已证实在大鼠小肠上皮细胞基底外侧质膜中存在钠/钙交换系统。摄取溶液中75 mM的钠离子可使ATP依赖性钙离子转运减少45%,尽管钠离子并不影响钙ATP酶的活性。用哇巴因或莫能菌素对膜囊泡进行预孵育可将钠离子对ATP依赖性钙离子摄取的抑制作用降至20%,这显然是通过阻止钠离子泵实现的囊泡内钠离子积累来实现的。得出的结论是,高囊泡内钠离子与囊泡内钙离子结合位点上的钙离子竞争。在存在哇巴因的情况下,对ATP依赖性钙离子转运的抑制作用对钠离子浓度呈S形依赖性,表明至少两个钠离子与一个钙离子反向转运之间存在协同相互作用。对钠离子的表观亲和力在15至20 mM之间。在没有ATP的情况下,钙离子摄取可通过钠离子梯度(囊泡内钠离子大于囊泡外钠离子)增强。这种钠离子梯度依赖性钙离子摄取进一步受到膜内正电位的刺激,但被莫能菌素消除。该系统对钙离子的表观亲和力低于1 microM。与ATP依赖性钙离子转运相反,十二指肠、空肠中部和回肠末端的基底外侧囊泡之间,钠离子梯度依赖性钙离子摄取没有显著差异。在十二指肠中,ATP驱动的钙离子摄取活性比钠/钙交换能力大5倍,但在回肠中,这两个系统的效力相当。此外,钠/钙交换机制不受1α,25 - 二羟基维生素D - 3的调节,因为用这种甾类激素补充维生素D缺乏的大鼠不会影响钠/钙交换系统,而会使ATP驱动的钙泵活性增加一倍。

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