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大鼠红细胞中的钠和铷通量

Sodium and rubidium fluxes in rat red blood cells.

作者信息

Beaugé L A, Ortíz O

出版信息

J Physiol. 1971 Nov;218(3):533-49. doi: 10.1113/jphysiol.1971.sp009632.

DOI:10.1113/jphysiol.1971.sp009632
PMID:5133948
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1331600/
Abstract
  1. The Na content of rat red cells was found to be 4.40 m-mole/l. cells. When incubated in K(Rb)-free Na this value was doubled in 1 hr, whereas in K(Rb)-free choline it was reduced to about 35% in the same period of time.2. In cells with elevated Na (13.70 m-mole/l.) the activation curve of Rb influx by external Rb reached the same V(max) in sodium as in choline. The shape of the curve was sigmoid in the first case (K(m) about 1.05 mM) and hyperbolic in the second (K(m) about 0.20 mM).3. The activation curve of rubidium influx by internal sodium was linear at least up to 12 m-mole/l. cells with a slope of 0.84. From this concentration it could increase more steeply, though the data is insufficient to assure it.4. In normal cells the efflux of Na in K(Rb)-free Na Ringer was 5.64 m-mole/l. cells. hr, and it was reduced to 4.32 m-mole by 10(-4)M ouabain. This was accompanied by a reduction of Na influx by 4.14 m-mole, representing then a Na-Na ouabain-sensitive exchange mechanism.5. At a concentration of 5 mM, external Rb increased Na efflux in 2.32 m-mole/l. cells. hr above the K(Rb)-free levels, and reduced Na influx by 2.13 m-mole.6. It is proposed that the Na pump is able to operate even in the absence of external K(Rb), though at reduced rate and on a Na-Na exchange basis (Na is the only monovalent cation in the bathing solution). External K(Rb) would have two actions: to increase the rate of shuttling of the carrier (catalytic effect) and to switch the Na-Na to a Na-K(Rb) exchange.7. These results raise a question of the real significance of the Na/K(Rb) ;coupling' ratio and the K-free effect on the Na pump mechanism.
摘要
  1. 发现大鼠红细胞的钠含量为4.40毫摩尔/升细胞。当在无钾(铷)的钠溶液中孵育时,该值在1小时内翻倍,而在无钾(铷)的胆碱溶液中,在相同时间内降至约35%。

  2. 在钠含量升高(13.70毫摩尔/升)的细胞中,外部铷引起的铷内流激活曲线在钠溶液中和在胆碱溶液中达到相同的最大速度(V(max))。在第一种情况下曲线形状为S形(米氏常数(K(m))约为1.05毫摩尔),在第二种情况下为双曲线形(K(m)约为0.20毫摩尔)。

  3. 内部钠引起的铷内流激活曲线至少在高达12毫摩尔/升细胞时呈线性,斜率为0.84。从该浓度起它可能更陡峭地增加,尽管数据不足以确定。

  4. 在正常细胞中,在无钾(铷)的钠林格液中钠外流为5.64毫摩尔/升细胞·小时,10(-4)M哇巴因使其降至4.32毫摩尔。这伴随着钠内流减少4.14毫摩尔,这代表了一种钠 - 钠哇巴因敏感交换机制。

  5. 在5毫摩尔浓度下,外部铷使钠外流比无钾(铷)水平增加2.32毫摩尔/升细胞·小时,并使钠内流减少2.13毫摩尔。

  6. 有人提出,即使在没有外部钾(铷)的情况下钠泵也能够运行,尽管速率降低且基于钠 - 钠交换基础(钠是浴液中唯一的单价阳离子)。外部钾(铷)将有两种作用:增加载体穿梭速率(催化作用)并将钠 - 钠交换转换为钠 - 钾(铷)交换。

  7. 这些结果提出了关于钠/钾(铷)“耦合”比率的实际意义以及无钾对钠泵机制影响的问题。

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引用本文的文献

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2
Modulation of Na+ transport systems in Wistar rat erythrocytes by excess dietary Na+ intake.过量膳食钠摄入对Wistar大鼠红细胞中钠转运系统的调节作用。
Pflugers Arch. 1983 Jun;398(1):64-8. doi: 10.1007/BF00584715.
3
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Proc Natl Acad Sci U S A. 1980 Jul;77(7):4283-6. doi: 10.1073/pnas.77.7.4283.
4
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本文引用的文献

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Factors in the active transport of cations.阳离子主动转运的相关因素。
J Physiol. 1951 Jan;112(1-2):59-83. doi: 10.1113/jphysiol.1951.sp004509.
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Membrane potential changes during sodium transport in frog sartorius muscle.蛙缝匠肌钠转运过程中的膜电位变化
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Membrane adenosine triphosphatase as a participant in the active transport of sodium and potassium in the human erythrocyte.膜三磷酸腺苷酶作为人类红细胞中钠和钾主动转运的参与者。
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The ouabain-sensitive fluxes of sodium and potassium in squid giant axons.乌本苷对枪乌贼巨大轴突中钠和钾通量的敏感性
J Physiol. 1969 Feb;200(2):459-96. doi: 10.1113/jphysiol.1969.sp008703.
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Potassium fluxes in dialyzed squid axons.透析乌贼轴突中的钾离子通量。
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Effect of tetraethylammonium on the active cation transport system of the red blood cell.四乙铵对红细胞活性阳离子转运系统的影响。
Am J Physiol. 1968 Oct;215(4):795-8. doi: 10.1152/ajplegacy.1968.215.4.795.
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Recent experiments on the properties of the Na efflux from squid axons.
J Gen Physiol. 1968 May;51(5):Suppl:172S+.
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Coupling and selectivity of sodium and potassium transport in squid giant axons.乌贼巨大轴突中钠和钾转运的偶联与选择性
J Gen Physiol. 1968 May;51(5):Suppl:152S+.