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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Voltage-gated calcium channel types in cultured C. elegans CEPsh glial cells.
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Voltage-gated calcium channel types in cultured C. elegans CEPsh glial cells.

机译:培养的秀丽隐杆线虫CEPsh神经胶质细胞中的电压门控钙通道类型。

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The four cephalic sensilla sheath (CEPsh) glial cells are important for development of the nervous system of Caenorhabditis elegans. Whether these invertebrate glia can generate intracellular Ca(2+) increases, a hallmark of mammalian glial cell excitability, is not known. To address this issue, we developed a transgenic worm with the specific co-expression of genetically encoded red fluorescent protein and green Ca(2+) sensor in CEPsh glial cells. This allowed us to identify CEPsh cells in culture and monitor their Ca(2+) dynamics. We show that CEPsh glial cells, in response to depolarization, generate various intracellular Ca(2+) increases mediated by voltage-gated Ca(2+) channels (VGCCs). Using a pharmacological approach, we find that the L-type is the preponderant VGCC type mediating Ca(2+) dynamics. Additionally, using a genetic approach we demonstrate that mutations in three known VGCC alpha(1)-subunit genes, cca-1, egl-19 and unc-2, can affect Ca(2+) dynamics of CEPsh glial cells. We suggest that VGCC-mediated Ca(2+) dynamics in the CEPsh glial cells are complex and display heterogeneity. These findings will aid understanding of how CEPsh glial cells contribute to the operation of the C. elegans nervous system.
机译:四个头端感觉鞘(CEPsh)神经胶质细胞对于秀丽隐杆线虫的神经系统发育很重要。这些无脊椎动物的胶质细胞是否可以产生细胞内Ca(2+)增加,哺乳动物胶质细胞兴奋性的标志,是未知的。为解决此问题,我们开发了一种转基因蠕虫,在CEPsh神经胶质细胞中具有特定的基因编码的红色荧光蛋白和绿色Ca(2+)共表达。这使我们能够鉴定培养物中的CEPsh细胞并监测其Ca(2+)动态。我们显示CEPsh胶质细胞响应去极化,生成各种细胞内Ca(2+)增加介导的电压门控Ca(2+)通道(VGCCs)。使用药理学方法,我们发现L型是介导Ca(2+)动力学的优势VGCC类型。此外,使用遗传方法,我们证明了三个已知VGCC alpha(1)-亚基基因cca-1,egl-19和unc-2中的突变会影响CEPsh神经胶质细胞的Ca(2+)动态。我们建议CEPsh胶质细胞中的VGCC介导的Ca(2+)动态是复杂的,并显示出异质性。这些发现将有助于了解CEPsh胶质细胞如何促进秀丽隐杆线虫神经系统的运作。

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