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气道上皮细胞膜氯离子通道的重构与磷酸化

Reconstitution and phosphorylation of chloride channels from airway epithelium membranes.

作者信息

Valdivia H H, Dubinsky W P, Coronado R

机构信息

Department of Physiology and Molecular Biophysics, Baylor College of Medicine, Houston, TX 77030.

出版信息

Science. 1988 Dec 9;242(4884):1441-4. doi: 10.1126/science.2462280.

Abstract

Airway epithelial chloride secretion is controlled by the apical-membrane chloride permeability. Purified apical-membrane vesicles from bovine tracheal epithelium have now been shown to contain functional chloride channels by using the planar-bilayer technique. Three types of chloride channels were observed; a voltage-dependent, calcium-independent, 71-picoSiemen (in 150 mM NaCl) channel accounted for more than 80 percent of the vesicular chloride conductance and was under strict control of phosphorylation. The channel underwent a fast rundown in less than 2 to 3 minutes of recording, and reactivation required in situ exposure to a phosphorylating "cocktail" containing the catalytic subunit of the adenosine 3',5'-monophosphate (cAMP)-dependent protein kinase. Mean open time and open probability were increased after phosphorylation, whereas slope conductance remained unchanged. Thus, metabolic control of tracheal chloride single channels can now be studied in vitro.

摘要

气道上皮氯化物分泌受顶端膜氯化物通透性控制。利用平面双层技术现已证明,从牛气管上皮纯化得到的顶端膜囊泡含有功能性氯化物通道。观察到三种类型的氯化物通道;一种电压依赖性、钙非依赖性、71皮西门子(在150 mM氯化钠中)的通道占囊泡氯化物电导的80%以上,且受磷酸化严格控制。该通道在记录不到2至3分钟内快速衰减,重新激活需要原位暴露于含有3',5'-环磷酸腺苷(cAMP)依赖性蛋白激酶催化亚基的磷酸化“混合液”中。磷酸化后平均开放时间和开放概率增加,而斜率电导保持不变。因此,现在可以在体外研究气管氯化物单通道的代谢控制。

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