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脑微血管内皮细胞中一种新型的阿米洛利敏感阳离子通道。

A new type of amiloride-sensitive cationic channel in endothelial cells of brain microvessels.

作者信息

Vigne P, Champigny G, Marsault R, Barbry P, Frelin C, Lazdunski M

机构信息

Centre National de la Recherche Scientifique, Parc Valrose, Nice, France.

出版信息

J Biol Chem. 1989 May 5;264(13):7663-8.

PMID:2468671
Abstract

Endothelial cells from brain microvessels form the blood-brain barrier. Brain microvessels and endothelial cells isolated from rat brain microvessels express an amiloride-sensitive cationic channel that was characterized using [3H]phenamil binding and patch-clamp experiments. [3H]Phenamil, a labeled amiloride analog, recognizes a single family of binding sites with a dissociation constant of 20-30 nM and a maximum binding capacity of 8-15 pmol/mg protein. The pharmacological profile of the channel (phenamil greater than benzamil greater than amiloride) is very similar to that of the epithelium Na+ channel of mammalian kidney and of frog epithelia. Long-lasting currents were observed in patch-clamp experiments using excised outside-out patches. Application of amiloride or phenamil first produced a rapid flickering of channel activity and then its complete blockade. The mean unit channel conductance at 140 mM Na+ was 23 picosiemens. The selectivity of Na+ over K+ was estimated from reversal potentials to be 1.5:1. Properties of the channel in microvessels are clearly distinct from those of the Na+ channel of the kidney, suggesting the existence of several isoforms of cationic channels that are sensitive to amiloride and its derivatives. The low selectivity cationic channel of endothelial cells in brain microvessels might be important for controlling both Na+ and K+ movements across the blood-brain barrier.

摘要

脑微血管内皮细胞形成血脑屏障。从大鼠脑微血管分离出的脑微血管和内皮细胞表达一种对阿米洛利敏感的阳离子通道,该通道通过[3H]苯那咪结合和膜片钳实验进行了表征。[3H]苯那咪是一种标记的阿米洛利类似物,可识别一类单一的结合位点,其解离常数为20 - 30 nM,最大结合容量为8 - 15 pmol/mg蛋白质。该通道的药理学特征(苯那咪大于苄胺咪大于阿米洛利)与哺乳动物肾脏和青蛙上皮的上皮钠通道非常相似。在使用切除的外侧向外膜片的膜片钳实验中观察到了持久电流。应用阿米洛利或苯那咪首先会使通道活动快速闪烁,然后完全阻断。在140 mM Na+ 时的平均单位通道电导为23皮西门子。根据反转电位估计Na+ 对K+ 的选择性为1.5:1。微血管中该通道的特性明显不同于肾脏的钠通道,这表明存在几种对阿米洛利及其衍生物敏感的阳离子通道同工型。脑微血管内皮细胞的低选择性阳离子通道可能对控制Na+ 和K+ 跨血脑屏障的移动很重要。

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