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Effects of voltage-gated calcium channel subunit genes on calcium influx in cultured C. elegans mechanosensory neurons.

机译:电压门控钙通道亚基基因对培养的秀丽隐杆线虫机械感觉神经元钙内流的影响。

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Voltage-gated calcium channels (VGCCs) serve as a critical link between electrical signaling and diverse cellular processes in neurons. We have exploited recent advances in genetically encoded calcium sensors and in culture techniques to investigate how the VGCC alpha1 subunit EGL-19 and alpha2/delta subunit UNC-36 affect the functional properties of C. elegans mechanosensory neurons. Using the protein-based optical indicator cameleon, we recorded calcium transients from cultured mechanosensory neurons in response to transient depolarization. We observed that in these cultured cells, calcium transients induced by extracellular potassium were significantly reduced by a reduction-of-function mutation in egl-19 and significantly reduced by L-type calcium channel inhibitors; thus, a main source of touch neuron calcium transients appeared to be influx of extracellular calcium through L-type channels. Transients did not depend directly on intracellular calcium stores, although a store-independent 2-APB and gadolinium-sensitive calcium flux was detected. The transients were also significantly reduced by mutations in unc-36, which encodes the main neuronal alpha2/delta subunit in C. elegans. Interestingly, while egl-19 mutations resulted in similar reductions in calcium influx at all stimulus strengths, unc-36 mutations preferentially affected responses to smaller depolarizations. These experiments suggest a central role for EGL-19 and UNC-36 in excitability and functional activity of the mechanosensory neurons.
机译:电压门控钙通道(VGCC)作为电信号与神经元中各种细胞过程之间的关键链接。我们已经利用遗传编码的钙传感器和培养技术的最新进展来研究VGCC alpha1亚基EGL-19和alpha2 / delta亚基UNC-36如何影响秀丽隐杆线虫机械感觉神经元的功能特性。使用基于蛋白质的光学指示剂喀麦隆,我们记录了来自培养的机械感觉神经元对瞬态去极化的钙瞬变。我们观察到在这些培养的​​细胞中,细胞外钾诱导的钙瞬变通过egl-19中的功能降低突变而显着降低,而通过L型钙通道抑制剂则显着降低。因此,触摸神经元钙瞬变的主要来源似乎是通过L型通道流入细胞外钙。瞬变不直接依赖于细胞内钙存储,尽管检测到存储独立的2-APB和g敏感的钙通量。瞬态也被unc-36中的突变显着减少,该unc-36编码秀丽隐杆线虫的主要神经元alpha2 /δ亚基。有趣的是,尽管egl-19突变导致在所有刺激强度下钙内流的相似减少,但unc-36突变优先影响对较小去极化的反应。这些实验表明EGL-19和UNC-36在机械感觉神经元的兴奋性和功能活性中起着核心作用。

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