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电鳐电板膜囊泡中乙酰胆碱受体控制的离子通量:影响离子通量测量的膜特性的鉴定与表征

Acetylcholine receptor-controlled ion flux in electroplax membrane vesicles: identification and characterization of membrane properties that affect ion flux measurements.

作者信息

Kim P S, Hess G P

出版信息

J Membr Biol. 1981 Feb 28;58(3):203-11. doi: 10.1007/BF01870906.

Abstract

Several intrinsic properties of acetylcholine receptor-rich membrane vesicles prepared from Electrophorus electricus, which need to be considered in measurements of receptor-mediated ion flux, have been identified. One of these properties is a slow exchange of inorganic ions in the vesicles. The slow exchange of ions is not related to the receptor-mediated flux of ions and accounts for 30-35% of the efflux observed. A method to separate this process from the receptor-controlled flux has been developed. It has also been shown, using a light-scattering method, that aggregation-disaggregation of the vesicles can interfere with the efflux measurements, and a method to overcome this problem has been developed. The difference in the amplitude of effluxes induced by saturating amounts of carbamylcholine and gramicidin has been investigated and has been shown not to be due to a receptor-controlled process; therefore, the amplitude difference does not need to be considered in understanding the receptor-controlled process.

摘要

已确定了从电鳗制备的富含乙酰胆碱受体的膜囊泡的几个内在特性,在测量受体介导的离子通量时需要考虑这些特性。其中一个特性是囊泡中无机离子的缓慢交换。离子的缓慢交换与受体介导的离子通量无关,占观察到的外流的30 - 35%。已开发出一种将该过程与受体控制的通量分离的方法。还使用光散射方法表明,囊泡的聚集 - 解聚会干扰外流测量,并且已开发出一种克服该问题的方法。已研究了由饱和量的氨甲酰胆碱和短杆菌肽诱导的外流幅度差异,结果表明这不是由受体控制的过程导致的;因此,在理解受体控制的过程时无需考虑幅度差异。

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