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Lack of “Hemichannel” Activity in Insulin-Producing Cells

机译:胰岛素产生细胞缺乏“半通道”活性

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Connexins and pannexins have been implicated in the formation of “hemichannels,” which may account for the uptake and release of membrane-impermeant molecules in single cells. The in vivo existence of “hemichannels” and their protein composition is still debated. Investigations on these matters are complicated by the lack of adequate negative controls. In search for such essential controls, the authors have investigated transformed (MIN6 line) and primary insulin-producing cells. Here, the authors report that these cells, which express Cx36 and pannexin1, cannot be shown to display functional “hemichannels,” as evaluated by (1) uptake of the membrane-impermeant tracer ethidium bromide, whether in the presence or absence of extracellular Ca2+, following stimulation of P2X7 receptors, and after exposure to hypotonic medium; and (2) lack of exocytosis-independent release of endogenousATP. Moreover, electrophysiological recordings indicated the absence of carbenoxolone-sensitive pannexin1 currents evoked by membrane potentials above +30 mV. Thus, insulin-producing cells are expected to provide a useful tool in the further characterization of hemichannel composition, properties, and physiological relevance.
机译:连接蛋白和泛新蛋白参与了“半通道”的形成,这可能解释了单细胞膜不渗透分子的摄取和释放。体内“半通道”及其蛋白质组成的存在仍存在争议。由于缺乏适当的负面控制,对这些问题的调查变得复杂。为了寻找这种必要的对照,作者研究了转化的(MIN6系)和原代胰岛素产生细胞。在这里,作者报告说,这些表达Cx36和pannexin1的细胞无法显示出功能性的“半通道”,如通过(1)摄取无膜示踪剂溴化乙锭所评估的,无论是否存在细胞外Ca2 +刺激P2X7受体后,以及接触低渗介质后; (2)缺乏依赖胞吐作用的内源性ATP释放。此外,电生理记录表明,膜电位高于+30 mV时不会引起羧苄索灵敏感的pannexin1电流。因此,预期产生胰岛素的细胞将在半通道组成,特性和生理相关性的进一步表征中提供有用的工具。

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