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蛙肌中低渗刺激对活性钠转运的影响:钠泵的明显上调

Hypo-osmotic stimulation of active Na+ transport in frog muscle: apparent upregulation of Na+ pumps.

作者信息

Venosa R A

机构信息

Cátedra de Fisiología con Biof157isica, Facultad de Ciencias Médicas, Universidad Nacional de La Plata, Argentina.

出版信息

J Membr Biol. 1991 Mar;120(2):97-104. doi: 10.1007/BF01872392.

Abstract

The purpose of this work was to determine if hypotonicity, in addition to the stimulation of active Na+ transport (Venosa, R.A., 1978, Biochim. Biophys. Acta 510:378-383), promoted changes in (i) active K+ influx, (ii) passive Na+ and K+ fluxes, and (iii) the number of 3H-ouabain binding sites. The results indicate that a reduction of external osmotic pressure (pi) to one-half of its normal value (pi = 0.5) produced the following effects: (i) an increase in active K+ influx on the order of 160%, (ii) a 20% reduction in Na+ influx and K+ permeability (PK), and (iii) a 40% increase in the apparent density of ouabain binding sites. These data suggest that the hypotonic stimulation of the Na+ pump is not caused by an increased leak of either Na+ (inward) or K+ (outward). It is unlikely that the stimulation of active Na+ extrusion and the rise in the apparent number of pump sites produced by hypotonicity were due to a reduction of the intracellular ionic strength. It appears that, at least in part, the stimulation of active Na+ transport takes place whenever muscles are transferred from one medium to another of lower tonicity even if neither one was hypotonic (for instance pi = 2 to pi = 1 transfer). Comparison of the present results with those previously reported indicate that in addition to the number of pump sites, the cycling rate of the pump is increased by hypotonicity. Active Na+ and K+ fluxes were not significantly altered by hypertonicity (pi = 2).

摘要

这项工作的目的是确定除了刺激主动钠转运(Venosa, R.A., 1978, Biochim. Biophys. Acta 510:378 - 383)外,低渗是否会促进以下变化:(i)主动钾内流,(ii)被动钠和钾通量,以及(iii)3H - 哇巴因结合位点的数量。结果表明,将外部渗透压(π)降至其正常值的一半(π = 0.5)会产生以下影响:(i)主动钾内流增加约160%,(ii)钠内流和钾通透性(PK)降低20%,以及(iii)哇巴因结合位点的表观密度增加40%。这些数据表明,低渗对钠泵的刺激不是由钠(向内)或钾(向外)泄漏增加引起的。低渗引起的主动钠排出刺激和泵位点表观数量增加不太可能是由于细胞内离子强度降低所致。似乎至少部分地,只要肌肉从一种介质转移到另一种张力较低的介质中,即使两种介质都不是低渗的(例如从π = 2转移到π = 1),主动钠转运就会受到刺激。将本研究结果与先前报道的结果进行比较表明,除了泵位点数量外,低渗还会增加泵的循环速率。高渗(π = 2)对主动钠和钾通量没有显著影响。

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