首页> 美国卫生研究院文献>The Journal of Neuroscience >Calmodulin Kinase Pathway Mediates the K+-Induced Increase in Gap Junctional Communication between Mouse Spinal Cord Astrocytes
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Calmodulin Kinase Pathway Mediates the K+-Induced Increase in Gap Junctional Communication between Mouse Spinal Cord Astrocytes

机译:钙调蛋白激酶途径介导K +诱导小鼠脊髓星形胶质细胞之间的间隙连接通讯的增加。

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摘要

Astrocytes are coupled to one another by gap junction channels that allow the diffusion of ions and small molecules throughout the interconnected syncytium. In astrocytes, gap junctions are believed to participate in spatial buffering removing the focal excess of potassium resultant from intense neuronal activity by current loops through the syncytium and are also implicated in the propagation of astrocytic calcium waves, a form of extraneuronal signaling. Gap junctions can be modulated by several factors, including elevation of extracellular potassium concentration. Because K+ elevation is a component of spinal cord injury, we evaluated the extent to which cultured spinal cord astrocytes is affected by K+levels and obtained evidence suggesting that a Ca2+–calmodulin (CaM) protein kinase is involved in the K+-induced increased coupling. Exposure of astrocytes to high K+ solutions induced a dose-dependent increase in dye coupling; such increased coupling was greatly attenuated by reducing extracellular Ca2+concentration, prevented by nifedipine, and potentiated by Bay-K-8644. These results indicate that K+-induced increased coupling is mediated by a signaling pathway that is dependent on the influx of Ca2+ through L-type Ca2+ channels. Evidence supporting the participation of the CaM kinase pathway on K+-induced increased coupling was obtained in experiments showing that calmidazolium and KN-93 totally prevented the increase in dye and electrical coupling induced by high K+ solutions. Because no changes in connexin43 expression levels or distribution were observed in astrocytes exposed to high K+ solutions, we propose that the increased junctional communication is related to an increased number of active channels within gap junction plaques.
机译:星形胶质细胞通过间隙连接通道彼此偶联,该间隙连接通道允许离子和小分子在相互连接的合胞体中扩散。在星形胶质细胞中,间隙连接被认为参与空间缓冲,通过通过合胞体的电流环去除由强烈的神经元活动产生的局灶性过量钾,并且还与星形细胞钙波(一种神经外信号的形式)的传播有关。间隙连接可通过多种因素调节,包括细胞外钾浓度的升高。由于K + 升高是脊髓损伤的一部分,因此我们评估了培养的脊髓星形胶质细胞受K + 水平影响的程度,并获得了表明Ca < sup> 2 + -钙调蛋白(CaM)蛋白激酶参与K + 诱导的偶联增强。星形胶质细胞暴露于高K + 溶液中导致染料偶联的剂量依赖性增加。这种减少的耦合作用通过降低细胞外Ca 2 + 的浓度而大大减弱,被硝苯地平阻止,并被Bay-K-8644增强。这些结果表明,K + 诱导的偶联增强是由信号通路介导的,该信号通路依赖于Ca 2 + 通过L型Ca 2+的流入。 渠道。在实验中获得了支持CaM激酶途径参与K + 诱导的偶联增强的证据,表明降钙素和KN-93完全阻止了高K 诱导的染料和电偶联的增加+ 解决方案。因为在暴露于高K + 溶液的星形胶质细胞中未观察到连接蛋白43表达水平或分布的变化,所以我们提出,增加的连接通讯与间隙连接斑块中活性通道数量的增加有关。

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