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镉作为研究人类红细胞膜钙依赖性阳离子通透性的工具。

Cadmium as a tool for studying calcium-dependent cation permeability of the human red blood cell membrane.

作者信息

Skulskii I A, Glasunov V V, Manninen V

机构信息

Institute of Evolutionary Physiology and Biochemistry, Acad. Sci. USSR, Sankt-Peterburg.

出版信息

Gen Physiol Biophys. 1991 Dec;10(6):549-60.

PMID:1724971
Abstract

Three Ca(2+)-dependent procedures known to increase cation permeability of red blood cell membranes were tested with Cd2+ ions which equal Ca2+ ions both in their charge and the crystal radius, 1. Increase of non-selective permeability for monovalent cations by incubating the red cells in a Ca(2+)-free sucrose medium. Addition of Cd2+ to the suspension of leaky cells failed to restore the initial impermeability of the red cell membrane while a repairing effect of Ca2+ was evident both in the presence and absence of Cd2+. Thus, in low electrolyte medium, Cd2+ could neither mimic Ca2+, nor prevent the latter from interacting with membrane structures which control cation permeability. 2. Increase of the K(+)-selective permeability by propranolol plus Ca2+. Cd2+ added to a Ca(2+)-free Ringer type medium containing propranolol enhanced K+ permeability similar to that obtained with Ca2+. No changes of membrane permeability could be detected in the presence of 0.5 mmol/l Cd2+ in absence of propranolol. The Cd(2+)-stimulated K+ channels were different from those induced by Ca2+. They proved to be insensitive to quinine, exhibited a low K+/Na+ selectivity, and showed no tendency to self-inactivation. 3. Stimulation of K+ permeability by electron donors plus Ca2+. Substitution of Ca2+ by Cd2+ yielded results similar to those obtained with propranolol. The ability of Cd2+ to overtake the role of Ca2+ appears to depend on the system studied. It supplies information allowing to distinguish between the diverse Ca(2+)-dependent systems in cell membranes.

摘要

用电荷和晶体半径与Ca2+离子相等的Cd2+离子,对已知可增加红细胞膜阳离子通透性的三种Ca(2+)依赖性过程进行了测试。1. 通过将红细胞置于无Ca(2+)的蔗糖培养基中孵育来增加单价阳离子的非选择性通透性。向渗漏细胞悬液中添加Cd2+未能恢复红细胞膜最初的不透性,而无论有无Cd2+,Ca2+的修复作用都很明显。因此,在低电解质培养基中,Cd2+既不能模拟Ca2+,也不能阻止Ca2+与控制阳离子通透性的膜结构相互作用。2. 普萘洛尔加Ca2+增加K(+)选择性通透性。添加到含有普萘洛尔的无Ca(2+)林格氏液型培养基中的Cd2+增强了K+通透性,类似于用Ca2+获得的结果。在无普萘洛尔的情况下,存在0.5 mmol/l Cd2+时未检测到膜通透性的变化。Cd(2+)刺激的K+通道与Ca2+诱导的通道不同。它们对奎宁不敏感,K+/Na+选择性低,且没有自失活倾向。3. 电子供体加Ca2+刺激K+通透性。用Cd2+替代Ca2+产生的结果与用普萘洛尔获得的结果相似。Cd2+取代Ca2+作用的能力似乎取决于所研究的系统。它提供了有助于区分细胞膜中不同Ca(2+)依赖性系统的信息。

相似文献

1
Cadmium as a tool for studying calcium-dependent cation permeability of the human red blood cell membrane.镉作为研究人类红细胞膜钙依赖性阳离子通透性的工具。
Gen Physiol Biophys. 1991 Dec;10(6):549-60.
2
Interaction between propranolol and electron donors in altering the calcium ion-dependent potassium ion-permeability of the human red blood cell membrane.普萘洛尔与电子供体在改变人红细胞膜钙离子依赖性钾离子通透性方面的相互作用。
Acta Physiol Scand. 1984 Mar;120(3):329-32. doi: 10.1111/j.1748-1716.1984.tb07391.x.
3
Cation specificity of propranolol-induced changes in RBC membrane permeability: comparative effects in human, dog and cat erythrocytes.普萘洛尔诱导的红细胞膜通透性变化的阳离子特异性:对人、狗和猫红细胞的比较效应
J Cell Physiol. 1977 May;91(2):317-21. doi: 10.1002/jcp.1040910216.
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[The effect of membrane-bound calcium on the activity of adenosine triphosphatase from erythrocytes and erythrocyte permeability for monovalent cations].[膜结合钙对红细胞三磷酸腺苷酶活性及红细胞对单价阳离子通透性的影响]
Biokhimiia. 1978 Feb;43(2):208-15.
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Cd2+ versus Ca2+-produced mitochondrial membrane permeabilization: a proposed direct participation of respiratory complexes I and III.镉离子与钙离子引起的线粒体膜通透性改变:呼吸复合体I和III的直接参与假说
Chem Biol Interact. 2004 Dec 7;150(3):253-70. doi: 10.1016/j.cbi.2004.09.019.
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Effect of extracellular potassium on the loss of potassium from human red blood cells treated with propranolol.细胞外钾对用普萘洛尔处理的人红细胞钾流失的影响。
Acta Physiol Scand. 1981 Mar;111(3):361-5. doi: 10.1111/j.1748-1716.1981.tb06748.x.
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Endothelin-1 and vasopressin activate Ca(2+)-permeable non-selective cation channels in aortic smooth muscle cells: mechanism of receptor-mediated Ca2+ influx.内皮素-1和血管加压素激活主动脉平滑肌细胞中Ca(2+)通透性非选择性阳离子通道:受体介导的Ca2+内流机制。
J Mol Cell Cardiol. 1996 Apr;28(4):707-22. doi: 10.1006/jmcc.1996.0066.
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The Ca2+-sensitive K+ transport in inside-out red cell membrane vesicles.红细胞内翻膜囊泡中对钙离子敏感的钾离子转运
Acta Biochim Biophys Acad Sci Hung. 1981;16(1-2):77-82.
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Effects of low electrolyte media on salt loss and hemolysis of mammalian red blood cells.低电解质介质对哺乳动物红细胞盐损失和溶血的影响。
J Cell Physiol. 1979 Sep;100(3):551-61. doi: 10.1002/jcp.1041000317.
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[Potassium and anion transport and activity of the Na+-pump in the erythrocyte membrane: 3 different mechanisms of regulation by intracellular calcium].[红细胞膜中钾离子、阴离子转运及钠泵活性:细胞内钙的三种不同调节机制]
Biokhimiia. 1987 Aug;52(8):1373-86.

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