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本文引用的文献

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The effect of sodium ions on the electrical activity of giant axon of the squid.钠离子对鱿鱼巨大轴突电活动的影响。
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2
Volume regulation by Amphiuma red blood cells. The membrane potential and its implications regarding the nature of the ion-flux pathways.蚓螈红细胞的体积调节。膜电位及其对离子通量途径性质的影响。
J Gen Physiol. 1980 Dec;76(6):683-708. doi: 10.1085/jgp.76.6.683.
3
Electrically silent cotransport on Na+, K+ and Cl- in Ehrlich cells.艾氏腹水癌细胞中 Na+、K+ 和 Cl- 的电沉默协同转运
Biochim Biophys Acta. 1980 Aug 4;600(2):432-47. doi: 10.1016/0005-2736(80)90446-0.
4
Chloride-activated passive potassium transport in human erythrocytes.人红细胞中氯离子激活的被动钾转运
Proc Natl Acad Sci U S A. 1980 Mar;77(3):1711-5. doi: 10.1073/pnas.77.3.1711.
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The effect of valinomycin on the ionic permeability of thin lipid membranes.缬氨霉素对薄脂质膜离子通透性的影响。
J Gen Physiol. 1967 Dec;50(11):2527-45. doi: 10.1085/jgp.50.11.2527.
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Effect of some monovalent anions on chloride and sulphate permeability of human red cells.某些单价阴离子对人红细胞氯和硫酸盐通透性的影响。
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Membrane proteins related to anion permeability of human red blood cells. I. Localization of disulfonic stilbene binding sites in proteins involved in permeation.与人类红细胞阴离子通透性相关的膜蛋白。I. 二磺酸芪结合位点在参与通透的蛋白质中的定位。
J Membr Biol. 1974;15(3):207-26. doi: 10.1007/BF01870088.
8
A furosemide-sensitive cotransport of sodium plus potassium in the human red cell.人红细胞中对呋塞米敏感的钠钾协同转运。
J Clin Invest. 1974 Mar;53(3):745-55. doi: 10.1172/JCI107613.
9
The response of duck erythrocytes to norepinephrine and an elevated extracellular potassium. Volume regulation in isotonic media.鸭红细胞对去甲肾上腺素和细胞外钾升高的反应。等渗介质中的体积调节。
J Gen Physiol. 1973 Apr;61(4):509-27. doi: 10.1085/jgp.61.4.509.
10
Equilibrium dialysis of ions in nystatin-treated red cells.制霉菌素处理的红细胞中离子的平衡透析
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鸭红细胞中儿茶酚胺刺激的离子转运。电中性[Na+K+2Cl]协同转运中的梯度效应。

Catecholamine-stimulated ion transport in duck red cells. Gradient effects in electrically neutral [Na + K + 2Cl] Co-transport.

作者信息

Haas M, Schmidt W F, McManus T J

出版信息

J Gen Physiol. 1982 Jul;80(1):125-47. doi: 10.1085/jgp.80.1.125.

DOI:10.1085/jgp.80.1.125
PMID:7119727
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2228668/
Abstract

The transient increase in cation permeability observed in duck red cells incubated with norepinephrine has been shown to be a linked, bidirectional, co-transport of sodium plus potassium. This pathway, sensitive to loop diuretics such as furosemide, was found to have a [Na + K] stoichiometry of 1:1 under all conditions tested. Net sodium efflux was inhibited by increasing external potassium, and net potassium efflux was inhibited by increasing external sodium. Thus, the movement of either cation is coupled to, and can be driven by, the gradient of its co-ion. There is no evidence of trans stimulation of co-transport by either cation. The system also has a specific anion requirement satisfied only by chloride or bromide. Shifting the membrane potential by varying either external chloride (at constant internal chloride) or external potassium (at constant internal potassium in the presence of valinomycin and DIDs [4,4'-diisothiocyano-2,2'-disulfonic acid stilbene]), has no effect on nor-epinephrine-stimulated net sodium transport. Thus, this co-transport system is unaffected by membrane potential and is therefore electrically neutral. Finally, under the latter conditions-when Em was held constant near EK and chloride was not at equilibrium-net sodium extrusion against a substantial electrochemical gradient could be produced by lowering external chloride at high internal concentrations, thereby demonstrating that the anion gradient can also drive co-transport. We conclude, therefore, that chloride participates directly in the co-transport of [Na + K + 2Cl].

摘要

用去甲肾上腺素孵育鸭红细胞时观察到的阳离子通透性的短暂增加,已被证明是钠加钾的一种偶联、双向共转运。这条对速尿等袢利尿剂敏感的途径,在所有测试条件下其[Na + K]化学计量比均为1:1。增加细胞外钾会抑制钠的净外流,增加细胞外钠会抑制钾的净外流。因此,任何一种阳离子的移动都与它的共离子梯度偶联,并可由该梯度驱动。没有证据表明任何一种阳离子会对共转运产生反式刺激。该系统还对特定阴离子有需求,只有氯离子或溴离子能满足这一需求。通过改变细胞外氯离子(细胞内氯离子浓度恒定)或细胞外钾离子(在缬氨霉素和二硫腙[4,4'-二异硫氰酸-2,2'-二磺酸芪]存在下细胞内钾离子浓度恒定)来改变膜电位,对去甲肾上腺素刺激的钠净转运没有影响。因此,这种共转运系统不受膜电位影响,所以是电中性的。最后,在后者的条件下——当膜电位保持在接近钾平衡电位且氯离子不平衡时——通过在高细胞内浓度下降低细胞外氯离子,可以产生逆着相当大的电化学梯度的钠净外流,从而证明阴离子梯度也能驱动共转运。因此,我们得出结论,氯离子直接参与了[Na + K + 2Cl]的共转运。