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首页> 外文期刊>The Journal of Physiology >Differential expression of Na+/K+-ATPase alpha-subunits in mouse hippocampal interneurones and pyramidal cells.
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Differential expression of Na+/K+-ATPase alpha-subunits in mouse hippocampal interneurones and pyramidal cells.

机译:Na + / K + -ATPaseα亚基在小鼠海马interneurones和锥体细胞中的差异表达。

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摘要

The sodium pump (Na+/K+-ATPase), maintains intracellular and extracellular concentrations of sodium and potassium by catalysing ATP. Three sodium pump alpha subunits, ATP1A1, ATP1A2 and ATP1A3, are expressed in brain. We compared their role in pyramidal cells and a subset of interneurones in the subiculum. Interneurones were identified by their expression of GFP under the GAD-65 promoter. We used the sensitivity to the cardiac glycoside, ouabain, to discriminate between different alpha subunit isoforms. GFP-positive interneurones were depolarized by nanomolar doses of ouabain, but higher concentrations were needed to depolarize pyramidal cells. Comparison of pump currents in these cells revealed a current sensitive to low doses of ouabain in interneurones, while micromolar doses of ouabain were needed to suppress the pump current in subicular pyramidal cells. As predicted, nanomolar doses of ouabain increased the frequency but not the amplitudes of IPSPs in pyramidal cells. Immunostaining confirmed a differential distribution of alpha-subunits of the Na+/K+-ATPase in subicular interneurones and pyramidal cells. In conclusion, these data suggest that while ATP1A3-isoforms regulate sodium and potassium homeostasis in subicular interneurones, ATP1A1-isoforms assume this function in pyramidal cells. This differential expression of sodium pump isoforms may contribute to differences in resting membrane potential of subicular interneurones and pyramidal cells.
机译:钠泵(Na + / K + -ATPase)通过催化ATP来维持细胞内和细胞外钠和钾的浓度。脑中表达了三个钠泵α亚基ATP1A1,ATP1A2和ATP1A3。我们比较了它们在锥体细胞和下丘脑中的部分神经元中的作用。通过在GAD-65启动子下的GFP表达来鉴定中间神经元。我们使用对强心苷哇巴因的敏感性来区分不同的α亚基亚型。 GFP阳性的中间神经元通过纳摩尔剂量的哇巴因去极化,但是需要更高浓度的锥体细胞去极化。比较这些细胞中的泵浦电流,发现电流对中间神经元中低剂量的哇巴因敏感,而需要微摩尔剂量的哇巴因来抑制亚锥体细胞的泵浦电流。如所预测的,纳摩尔剂量的哇巴因增加了锥体细胞中IPSP的频率,但没有增加。免疫染色证实了在亚神经节和锥体细胞中Na + / K + -ATPase的α-亚基分布不同。总之,这些数据表明,虽然ATP1A3同工型调节亚层间神经元的钠和钾稳态,但ATP1A1同工型在锥体细胞中承担了这一功能。钠泵同工型的这种差异表达可能会导致亚层间神经元和锥体细胞的静息膜电位差异。

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