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豚鼠回肠中G蛋白对毒蕈碱代谢型通道电压依赖性及门控的调控

G-protein control of voltage dependence as well as gating of muscarinic metabotropic channels in guinea-pig ileum.

作者信息

Zholos A V, Bolton T B

机构信息

Department of Pharmacology and Clinical Pharmacology, St George's Hospital Medical School, London.

出版信息

J Physiol. 1994 Jul 15;478 ( Pt 2)(Pt 2):195-202. doi: 10.1113/jphysiol.1994.sp020242.

DOI:10.1113/jphysiol.1994.sp020242
PMID:7965841
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1155678/
Abstract
  1. Voltage-dependent properties of muscarinic receptor cationic current activated by carbachol in single smooth muscle cells have been studied using patch-clamp recording techniques. Cells were obtained by enzymic digestion from the longitudinal muscle layer of guinea-pig small intestine. 2. The inward cationic current showed a pronounced U-shaped current-voltage relationship (inward current negative). The relationship of cationic conductance to voltage could be described by a Boltzman distribution which was shifted 36 mV in the negative direction on the voltage axis by increasing fractional receptor occupancy (by increasing agonist concentration from 3 to 300 microM), and in the positive direction by desensitization during prolonged application of agonist. Cationic channels opened by low and high concentrations of carbachol at the same potential do not have identical properties. 3. Release of GTP within the cell, by flash photolysis of an inert caged precursor, had the same effect on the current-voltage relationship as increasing receptor occupancy by the agonist. Release of GDP beta S by flash photolysis had the opposite effect. 4. These various results could be explained if cationic channel opening upon receptor activation required binding of at least one alpha-GTP subunit, but the position of the activation curve on the voltage axis depended critically on the concentration of activated G-protein alpha-subunits in the cell.
摘要
  1. 运用膜片钳记录技术,研究了卡巴胆碱激活的豚鼠小肠纵行肌单个平滑肌细胞毒蕈碱受体阳离子电流的电压依赖性特性。细胞通过酶解豚鼠小肠纵行肌层获得。2. 内向阳离子电流呈现出明显的U形电流-电压关系(内向电流为负)。阳离子电导与电压的关系可用玻尔兹曼分布来描述,随着受体占有率增加(通过将激动剂浓度从3 μM增加到300 μM),该分布在电压轴上沿负向移动36 mV,而在长时间应用激动剂导致脱敏时则沿正向移动。在相同电位下,低浓度和高浓度卡巴胆碱开启的阳离子通道特性并不相同。3. 通过对惰性笼形前体进行闪光光解在细胞内释放GTP,对电流-电压关系的影响与激动剂增加受体占有率相同。通过闪光光解释放GDP-β-S则产生相反的效果。4. 如果受体激活时阳离子通道开放需要至少一个α-GTP亚基结合,但激活曲线在电压轴上的位置关键取决于细胞内活化G蛋白α亚基的浓度,那么这些不同结果就可以得到解释。

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