A cation non-selective channel induced by extracellular ATP in macrophages and phagocytic cells of the thymic reticulum

被引:26
|
作者
CoutinhoSilva, R
Alves, LA
Savino, W
Persechini, PM
机构
[1] FED UNIV RIO DE JANEIRO, INST BIOFIS CARLOS CHAGAS FILHO, BR-21945 RIO DE JANEIRO, BRAZIL
[2] FIOCRUZ MS, INST OSWALDO CRUZ, LAB PESQUISAS SOBRE TIMO, RIO DE JANEIRO, BRAZIL
来源
关键词
ATP; purinergic receptor; single channel; macrophage; phagocytic cell; (thymic reticulum);
D O I
10.1016/0005-2736(95)00200-6
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Extracellular ATP(4-) can bind to P-2Z purinergic receptors inducing depolarization and cytoplasmic membrane permeabilization to small molecular weight solutes in macrophages, thymocytes, mast cells, phagocytic cells of the thymic reticulum and other cell types. An ATP(4-)-induced cation current has been described in whole-cell records of some of these cells but it is currently not clear whether these currents and the phenomenon of membrane permeabilization are a consequence of only one type of P-2Z-associated channel/pore or two different phenomena triggered by one or more receptors. Here we use the outside-out patch-clamp technique to describe a single channel associated with this cation current in two murine phagocytic cells: intraperitoneal macrophages and phagocytic cells of the thymic reticulum. Multi channel currents could be readily observed in 77% of the outside-out patches of macrophages. Single channels of 7.8 pS could usually be resolved only in tail currents. Reversal potential measurements and ion replacement experiments indicated a lack of cation selectivity, similarly to what has already been described for the ATP(4-)-induced whole-cell inward current. No large-conductance channels that could explain the permeabilization to small molecular weight solutes was observed under our experimental conditions. A single channel of approx. 5 pS was also observed in phagocytic cells of the thymic reticulum under similar conditions. We conclude that the channel here described is the main carrier of cation current usually associated with the binding of ATP(4-) to P-2Z receptors in whole-cell and outside-out patch-clamp experiments.
引用
收藏
页码:125 / 130
页数:6
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