首页> 美国卫生研究院文献>The Journal of Physiology >An estimate of sodium/potassium pump activity and the number of pump sites in the smooth muscle of the guinea-pig taenia coli using 3Houabain
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An estimate of sodium/potassium pump activity and the number of pump sites in the smooth muscle of the guinea-pig taenia coli using 3Houabain

机译:使用3 H哇巴因估计钠/钾泵浦活动和豚鼠带大肠杆菌平滑肌中泵浦部位的数量

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摘要

1. Binding of tritiated ouabain to the smooth muscle of the guinea-pig taenia coli showed two components, one saturable at lower glycoside concentrations and the other linear with increasing concentrations.2. The saturable component alone was affected by extracellular potassium concentrations. This component seems to be bound to sodium pumping sites, and when completely saturated binds 1·1 × 1011 molecules per mg fresh wt. of tissue, or 250-300 molecules per square micron of membrane, assuming a volume:surface area ratio of 1·5 μm.3. Only a fraction of 42K uptake by the cells can be blocked by ouabain at maximal concentrations. In normal Krebs solution two thirds can be blocked. The remaining one third is presumably passive uptake. The fraction blocked is reduced as the extracellular potassium concentration, and thus passive uptake, is increased.4. The amount of potassium pumped into the cells at various concentrations of extracellular potassium has been calculated. In normal Krebs solution the amount pumped in 45 min was 20·0 m-mole/kg fresh wt., and this was increased at higher potassium concentrations.5. On the assumption of a stoichiometry of 3Na: 2K, the pump sites in normal Krebs solution have a turnover rate of 1320 min-1.6. Indirect calculations of sodium movements suggest that the sodium permeability may be about 0·9 × 10-8 cm sec-1 and the pump may generate a current of 0·9 × 10-7 A cm-2. This crossing an Ohmic membrane resistance of 30-60 kΩ cm2 would be equivalent to a potential difference of 3-5 mV.
机译:1. ti化的哇巴因与豚鼠带状coli虫的平滑肌结合表现出两种成分,一种在糖苷浓度较低时可饱和,另一种在浓度增加时呈线性。单独的可饱和成分受细胞外钾浓度的影响。该组分似乎与钠泵送位点结合,当完全饱和时,每毫克新鲜wt结合1·1×10 11 分子。假设体积与表面积之比为1·5μm,则组织或每平方微米膜有250-300个分子。3。在最大浓度下,哇巴因只能阻止细胞摄取 42 K的一小部分。在正常的克雷布斯解决方案中,三分之二可以被阻止。剩余的三分之一可能是被动摄取。随着细胞外钾浓度的增加,被阻断的分数降低,从而增加了被动摄取。4。已经计算出各种浓度的细胞外钾泵入细胞的钾量。在正常的克雷布斯溶液中,在45分钟内的泵送量为20·0 m-mole / kg新鲜重量,并​​且在较高的钾浓度下增加了。5。在化学计量为3Na:2K的假设下,正常Krebs溶液中的泵浦点的周转率为1320 min -1 .6。钠运动的间接计算表明,钠渗透率可能约为0·9×10 -8 cm sec -1 ,泵的电流可能为0·9× 10 -7 厘米 -2 。跨过30-60kΩcm 2 的欧姆膜电阻将等于3-5 mV的电位差。

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