首页> 外文期刊>The Journal of Physiology >The electrogenic effects of Na(+)-K(+)-ATPase in rat auditory thalamus.
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The electrogenic effects of Na(+)-K(+)-ATPase in rat auditory thalamus.

机译:Na(+)-K(+)-ATPase在大鼠听性丘脑中的电化作用。

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1. The electrogenic effects of the Na(+)-K(+)-ATPase in thalamic neurones were investigated by means of intracellular and whole-cell patch-clamp recording techniques in rat medial geniculate body (MGB) maintained in vitro. 2. In twenty-six out of thirty-one neurones recorded intracellularly, application of the Na(+)-K+ pump inhibitor strophanthidin induced two different types of membrane depolarization: a small, reversible depolarization with a peak amplitude of 4 +/- 2.6 mV or a prolonged depolarization of large amplitude (48.6 +/- 9.0 mV) with or without a decrease in apparent membrane resistance. Blockade of glutamate receptors with kynurenic acid or 6-cyano-7-nitroquinoxaline-2,3-dione and (+/-)-2-amino-5-phosphonopentanoic acid did not prevent either type of pump response, but the large depolarization was not seen when the medium contained the sodium channel blocker TTX. 3. Whole-cell patch-clamp recording showed that the small membrane depolarization is mediated by an inward membrane current (39.00 +/- 5.70 pA) that exhibited a weak voltage dependence. An inward current of similar amplitude was also induced in MGB cells when the pipette solution contained nominally zero Na+ or when K+ was temporarily omitted from the extracellular medium. The large membrane depolarization or the corresponding membrane current was not observed in whole-cell conditions. 6. Transient inhibition of the electrogenic Na(+)-K(+)-ATPase consistently led to a change in the mode of synaptic transmission in MGB cells, during which the synaptically evoked burst response was either blocked or converted into a single spike discharge. 7. Taken together, these data suggest that blockade of the electrogenic pump produces a dual membrane effect in mammalian thalamic neurones: a small electrogenic membrane depolarization and a large depolarization response that can be prevented by artificially maintaining the transmembrane ionic gradients. The electrogenic activity of the Na(+)-K(+)-ATPase may play an important role in setting the mode of synaptic transmission in sensory thalamus.
机译:1.通过细胞内和全细胞膜片钳记录技术,在体外维持的大鼠内侧膝状体(MGB)中研究了Na(+)-K(+)-ATPase在丘脑神经元中的电电作用。 2.在细胞内记录的31个神经元中,有26个神经元中,应用Na(+)-K +泵抑制剂strophanthidin引起两种不同类型的膜去极化:小的可逆去极化,峰值幅度为4 +/- 2.6 mV或大振幅(48.6 +/- 9.0 mV)的长时间去极化,无论表观膜电阻是否降低。用犬尿酸或6-氰基-7-硝基喹喔啉-2,3-二酮和(+/-)-2-氨基-5-膦基戊酸封闭谷氨酸受体并不能阻止任何一种泵浦反应,但是大的去极化是当介质包含钠通道阻滞剂TTX时看不到。 3.全细胞膜片钳记录表明小膜去极化是由向内膜电流(39.00 +/- 5.70 pA)介导的,该电流表现出弱的电压依赖性。当移液器溶液名义上含零的Na +或暂时从细胞外培养基中遗漏K +时,在MGB细胞中也会感应到类似幅度的内向电流。在全细胞条件下未观察到大的膜去极化或相应的膜电流。 6.短暂抑制电源性Na(+)-K(+)-ATPase始终导致MGB细胞中突触传递模式的改变,在此期间突触诱发的猝发反应被阻断或转化为单个尖峰放电。 7.综上所述,这些数据表明,对电泵的阻断在哺乳动物丘脑神经元中产生了双重膜效应:较小的电膜去极化和较大的去极化响应,可以通过人为地维持跨膜离子梯度来防止。 Na(+)-K(+)-ATPase的电活性可能在设置感觉丘脑中的突触传递模式中起重要作用。

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