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大鼠视上核神经元中的一种渗透压敏感的电压门控钾电流。

An osmosensitive voltage-gated K+ current in rat supraoptic neurons.

作者信息

Zhang Wenbo, Wang Daoyi, Liu Xiao-Hong, Kosala W R A, Rajapaksha J S, Fisher Thomas E

机构信息

Department of Physiology, College of Medicine, University of Saskatchewan, Saskatoon, SK, Canada.

出版信息

Eur J Neurosci. 2009 Jun;29(12):2335-46. doi: 10.1111/j.1460-9568.2009.06772.x. Epub 2009 May 22.

Abstract

The magnocellular neurosecretory cells of the hypothalamus (MNCs) regulate their electrical behaviour as a function of external osmolality through changes in the activity of osmosensitive ion channels. We now present evidence that the MNCs express an osmosensitive voltage-gated K(+) current (the OKC). Whole-cell patch-clamp experiments on acutely isolated MNCs were used to show that increases in the external osmolality from 295 to 325 mosmol/kg cause an increase in a slow, tetraethylammonium-insensitive outward current. The equilibrium potential for this current is close to the predicted E(K) in two different concentrations of external K(+). The OKC is sensitive to block by Ba(2+) (0.3 mm), and by the M-type K(+) current blockers linopirdine (150 microm) and XE991 (5 microm), and to enhancement by retigabine (10 microm), which increases opening of M-type K(+) channels. The OKC is suppressed by muscarine (30 microm) and is decreased by the L-type Ca(2+) channel blocker nifedipine (10 microm), but not by apamin (100 nm), which blocks SK-type Ca(2+)-dependent K(+) currents. Reverse transcriptase-polymerase chain reaction and immunocytochemical data suggest that MNCs express several members of the K(V)7 (KCNQ) family of K(+) channels, including K(V)7.2, 7.3, 7.4 and 7.5. Extracellular recordings of individual MNCs in a hypothalamic explant preparation demonstrated that an XE991- and retigabine-sensitive current contribute to the regulation of MNC firing. Our data suggest that the MNCs express an osmosensitive K(+) current that could contribute to the regulation of MNC firing by external osmolality and that could be mediated by K(V)7/M-type K(+) channels.

摘要

下丘脑的大细胞神经分泌细胞(MNCs)通过渗透压敏感离子通道活性的变化,将其电行为调节为外部渗透压的函数。我们现在提供证据表明,MNCs表达一种渗透压敏感的电压门控钾电流(OKC)。对急性分离的MNCs进行的全细胞膜片钳实验表明,外部渗透压从295 mosmol/kg增加到325 mosmol/kg会导致一种缓慢的、对四乙铵不敏感的外向电流增加。在两种不同浓度的外部钾离子中,该电流的平衡电位接近预测的E(K)。OKC对Ba(2+)(0.3 mM)、M型钾电流阻滞剂利诺吡啶(150 μM)和XE991(5 μM)的阻断敏感,对瑞替加滨(10 μM)的增强敏感,瑞替加滨可增加M型钾通道的开放。OKC被毒蕈碱(30 μM)抑制,并被L型钙通道阻滞剂硝苯地平(10 μM)降低,但不被阻断SK型钙依赖性钾电流的蜂毒明肽(100 nM)降低。逆转录聚合酶链反应和免疫细胞化学数据表明,MNCs表达钾通道K(V)7(KCNQ)家族的几个成员,包括K(V)7.2、7.3、7.4和7.5。下丘脑外植体制备中单个MNCs的细胞外记录表明,一种对XE991和瑞替加滨敏感的电流有助于调节MNCs的放电。我们的数据表明,MNCs表达一种渗透压敏感的钾电流,该电流可能有助于通过外部渗透压调节MNCs的放电,并且可能由K(V)7/M型钾通道介导。

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