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大鼠基底内侧下丘脑神经元中一种钾通道被细胞内ATP激活。

Activation by intracellular ATP of a potassium channel in neurones from rat basomedial hypothalamus.

作者信息

Rowe I C, Treherne J M, Ashford M L

机构信息

Department of Pharmacology, University of Cambridge, UK.

出版信息

J Physiol. 1996 Jan 1;490 ( Pt 1)(Pt 1):97-113. doi: 10.1113/jphysiol.1996.sp021129.

Abstract
  1. Cell-attached recordings from isolated glucose-sensitive hypothalamic neurones show that on removal of extracellular glucose there is an increased action current frequency concomitant with decreased single-channel activity. Conversely activation of single K+ channels was observed when extracellular glucose was increased. Isolation of membrane patches into the inside-out configuration following cell-attached recording demonstrated the presence of an ATP-activated K+ channel. 2. The ATP-activated K+ channel was characterized by a mean single-channel conductance of 132 pS in symmetrical 140 mM KCl solutions. Single-channel open-state probability (Po) was not calcium dependent, and the presence of calcium did not prevent activation of the channel by ATP. 3. Activation of the channel by ATP was concentration dependent and the Po of the ATP-activated channel was unaffected by membrane voltage, regardless of the degree of activation elicited by ATP. 4. Open and closed time histograms were constructed from inside-out and cell-attached recordings and were consistent with a single open and two closed states. Channel openings were grouped in bursts. Application of ATP, in isolated patches, and glucose, in cell-attached patches, increased the burst duration and number of bursts per second and decreased the slow closed-state time constant. In neither case was there a significant change in the fast closed-state time constant nor the open-state time constant. 5. The non-hydrolysable ATP analogue adenylylimidodiphosphate (AMP(PNP)) and 'Mg2(+)-free' ATP produced little change in the Po of the ATP-activated K+ channel when applied to the intracellular surface of excised patches. These results suggest that activation of this channel is via an enzymic mechanism. 6. ADP, GTP and GDP also activated the channel in a Mg(2+)-dependent manner. ADP and ATP activated the channel in an additive manner and neither GTP nor GDP inhibited channel activity induced by ATP. 7. It is concluded that the ATP-activated K+ channel observed in isolated inside-out patches from hypothalamic neurones is the same as the channel activated by an increase in the concentration of extracellular glucose in cell-attached recordings from glucose-sensitive neurones.
摘要
  1. 对分离出的葡萄糖敏感型下丘脑神经元进行细胞贴附式记录显示,去除细胞外葡萄糖后,动作电流频率增加,同时单通道活性降低。相反,当细胞外葡萄糖增加时,可观察到单个钾离子通道的激活。在细胞贴附式记录后将膜片分离成内面向外模式,证实存在一种ATP激活的钾离子通道。2. 在对称的140 mM氯化钾溶液中,ATP激活的钾离子通道的平均单通道电导为132 pS。单通道开放态概率(Po)不依赖于钙,且钙的存在并不阻止ATP对该通道的激活。3. ATP对该通道的激活呈浓度依赖性,且ATP激活通道的Po不受膜电压影响,无论ATP引起的激活程度如何。4. 从内面向外和细胞贴附式记录构建了开放和关闭时间直方图,与单一开放状态和两个关闭状态一致。通道开放成簇出现。在分离的膜片中施加ATP,在细胞贴附的膜片中施加葡萄糖,增加了爆发持续时间和每秒爆发次数,并缩短了慢关闭态时间常数。在这两种情况下,快关闭态时间常数和开放态时间常数均无显著变化。5. 当将不可水解的ATP类似物腺苷酰亚胺二磷酸(AMP(PNP))和“无镁离子”的ATP应用于切除膜片的细胞内表面时,ATP激活的钾离子通道的Po几乎没有变化。这些结果表明该通道的激活是通过一种酶促机制。6. ADP、GTP和GDP也以镁离子依赖性方式激活该通道。ADP和ATP以相加方式激活该通道,GTP和GDP均不抑制ATP诱导的通道活性。7. 得出结论,在下丘脑神经元分离的内面向外膜片中观察到的ATP激活的钾离子通道与在葡萄糖敏感神经元的细胞贴附式记录中由细胞外葡萄糖浓度增加所激活的通道相同。

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本文引用的文献

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