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Opening of Astrocytic Mitochondrial ATP-Sensitive Potassium Channels Upregulates Electrical Coupling between Hippocampal Astrocytes in Rat Brain Slices

机译:星形细胞线粒体ATP敏感性钾通道的开放上调大鼠脑切片中海马星形胶质细胞之间的电耦合。

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摘要

Astrocytes form extensive intercellular networks through gap junctions to support both biochemical and electrical coupling between adjacent cells. ATP-sensitive K+ (KATP) channels couple cell metabolic state to membrane excitability and are enriched in glial cells. Activation of astrocytic mitochondrial KATP (mitoKATP) channel regulates certain astrocytic functions. However, less is known about its impact on electrical coupling between directly coupled astrocytes ex vivo. By using dual patch clamp recording, we found that activation of mitoKATP channel increased the electrical coupling ratio in brain slices. The electrical coupling ratio started to increase 3 min after exposure to Diazoxide, a mitoKATP channel activator, peaked at 5 min, and maintained its level with little adaptation until the end of the 10-min treatment. Blocking the mitoKATP channel with 5-hydroxydecanoate, inhibited electrical coupling immediately, and by 10-min, the ratio dropped by 71% of the initial level. Activation of mitoKATP channel also decreased the latency time of the transjunctional currents by 50%. The increase in the coupling ratio resulting from the activation of the mitoKATP channel in a single astrocyte was further potentiated by the concurrent inhibiting of the channel on the recipient astrocyte. Furthermore, Meclofenamic acid, a gap-junction inhibitor which completely blocked the tracer coupling, hardly reversed the impact of mitoKATP channel's activation on electrical coupling (by 7%). The level of mitochondrial Connexin43, a gap junctional subunit, significantly increased by 70% in astrocytes after 10-min Diazoxide treatment. Phospho-ERK signals were detected in Connexin43 immunoprecipitates in the Diazoxide-treated astrocytes, but not untreated control samples. Finally, inhibiting ERK could attenuate the effects of Diazoxide on electrical coupling by 61%. These findings demonstrate that activation of astrocytic mitoKATP channel upregulates electrical coupling between hippocampal astrocytes ex vivo. In addition, this effect is mainly via up-regulation of the Connexin43-constituted gap junction coupling by an ERK-dependent mechanism in the mitochondria.
机译:星形胶质细胞通过间隙连接形成广泛的细胞间网络,以支持相邻细胞之间的生化和电耦合。 ATP敏感的K + (KATP)通道将细胞的代谢状态与膜的兴奋性耦合,并富含神经胶质细胞。星形细胞线粒体KATP(mitoKATP)通道的激活调节某些星形细胞功能。然而,关于其对离体直接耦合的星形胶质细胞之间的电耦合的影响知之甚少。通过使用双膜片钳记录,我们发现mitoKATP通道的激活增加了脑切片中的电耦合比。暴露于mitoKATP通道激活剂Diazoxide后3分钟,电耦合比开始增加,在5分钟时达到峰值,并在几乎没有适应的情况下保持其水平,直到10分钟治疗结束。用5-羟基癸酸酯阻断mitoKATP通道可立即抑制电耦合,并且在10分钟内,该比率下降了初始水平的71%。 mitoKATP通道的激活还使跨结电流的等待时间减少了50%。通过同时抑制受体星形胶质细胞上的通道,进一步增强了由单个星形胶质细胞中的mitoKATP通道激活导致的偶联率增加。此外,甲氯芬那酸是一种能完全阻断示踪剂偶联的间隙连接抑制剂,几乎不能逆转mitoKATP通道激活对电偶联的影响(降低7%)。在过氧化二氮处理10分钟后,星形胶质细胞中的缝隙连接亚单位线粒体连接蛋白43的水平显着增加了70%。在二氮嗪处理的星形胶质细胞中的连接蛋白43免疫沉淀物中检测到了磷酸化ERK信号,但未处理的对照样品中未检测到。最后,抑制ERK可使二氮嗪对电耦合的作用减弱61%。这些发现表明,星形细胞的mitoKATP通道的激活可上调离体海马星形胶质细胞之间的电耦合。另外,该作用主要是通过线粒体中ERK依赖性机制通过连接蛋白43构成的间隙连接偶联的上调。

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