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使用灌注式膜片钳电极从蝗虫肌肉纤维记录到的单谷氨酸激活通道。

Single glutamate-activated channels recorded from locust muscle fibres with perfused patch-clamp electrodes.

作者信息

Cull-Candy S G, Miledi R, Parker I

出版信息

J Physiol. 1981 Dec;321:195-210. doi: 10.1113/jphysiol.1981.sp013979.

DOI:10.1113/jphysiol.1981.sp013979
PMID:6279823
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1249621/
Abstract
  1. Glutamate-activated single channels have been examined with conventional and internally perfused patch-clamp electrodes applied to the extrajunctional membrane of locust muscle fibres which were usually treated with concanavalin A to reduce desensitization. Channels opened by glutamate and other agonists have been compared.2. Recording patches were selected where there appeared to be only one active channel under the pipette. The conductance for single glutamate-activated channels was 150 pS and was not markedly dependent on clamp potential. The lifetimes of the channels were usually exponentially distributed with a mean of tau(glutamate) = 2.3 +/- 0.12 msec, T = 23 degrees C, V(m) = -60 mV.3. Channels opened by fluoroglutamate had a mean lifetime of tau(fluoroglutamate) = 1.4 +/- 0.1 msec; channels opened by quisqualate had a mean lifetime of tau(quisqualate) = 6.4 +/- 1.0 msec. The conductances of channels opened by fluoroglutamate, quisqualate and glutamate were not significantly different.4. The behaviour of individual receptor-channel complexes has been examined at various concentrations of glutamate. Drug solutions were applied through an internal perfusion pipette which allowed exchange of the solution in the patch-electrode tip within 10 sec. The distribution of channel closed times could be fitted with a single exponential. Channel lifetime was not markedly dependent on glutamate concentration (30-600 mum) whereas the channel closed time decreased with increasing glutamate concentration.5. The reciprocal of channel closed time vs. glutamate concentration had a slope value of 1.85 on logarithmic co-ordinates. The approximately second power dependence of net forward reaction rate on glutamate concentration suggests that at least two glutamate molecules activate a single receptor-channel complex.6. The apparent dissociation constant for the glutamate-receptor complex is large, being about 300-500 muM. If the receptors have an equally low affinity for neurally released transmitter, then only a small amount of the transmitter packet is expected to bind to receptors. Quisqualate and glutamate have similar receptor affinities whereas receptor affinity for fluoroglutamate is smaller.
摘要
  1. 利用传统的和内部灌注的膜片钳电极,对通常用伴刀豆球蛋白A处理以减少脱敏作用的蝗虫肌纤维结外膜进行了谷氨酸激活单通道的研究。比较了由谷氨酸和其他激动剂开启的通道。

  2. 选择记录膜片,使其移液管下似乎只有一个活性通道。单个谷氨酸激活通道的电导为150皮西门子,且不明显依赖于钳制电位。通道寿命通常呈指数分布,在T = 23℃、V(m)= -60 mV时,平均τ(谷氨酸)= 2.3±0.12毫秒。

  3. 氟代谷氨酸开启的通道平均寿命为τ(氟代谷氨酸)= 1.4±0.1毫秒;quisqualate开启的通道平均寿命为τ(quisqualate)= 6.4±1.0毫秒。氟代谷氨酸、quisqualate和谷氨酸开启的通道电导无显著差异。

  4. 在不同浓度的谷氨酸条件下研究了单个受体-通道复合物的行为。药物溶液通过内部灌注移液管施加,这使得膜片电极尖端内的溶液在10秒内得以交换。通道关闭时间的分布可用单一指数拟合。通道寿命不明显依赖于谷氨酸浓度(30 - 600μM),而通道关闭时间随谷氨酸浓度增加而减少。

  5. 在对数坐标上,通道关闭时间的倒数与谷氨酸浓度的斜率值为1.85。净正向反应速率对谷氨酸浓度的近似二次方依赖性表明,至少两个谷氨酸分子激活单个受体-通道复合物。

  6. 谷氨酸-受体复合物的表观解离常数很大,约为300 - 500μM。如果受体对神经释放的递质具有同样低的亲和力,那么预计只有少量的递质包会与受体结合。Quisqualate和谷氨酸具有相似的受体亲和力,而受体对氟代谷氨酸的亲和力较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb7b/1249621/8cb83f9882c3/jphysiol00728-0203-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb7b/1249621/8cb83f9882c3/jphysiol00728-0203-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb7b/1249621/8cb83f9882c3/jphysiol00728-0203-a.jpg

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