首页> 外文期刊>Cellular and molecular biology >Modulation of muscarinic signaling in PC12 cells overexpressing neuronal Ca2+ sensor-1 protein.
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Modulation of muscarinic signaling in PC12 cells overexpressing neuronal Ca2+ sensor-1 protein.

机译:过度表达神经元Ca2 + sensor-1蛋白的PC12细胞中毒蕈碱信号的调节。

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摘要

It has been suggested that overexpression of neuronal Ca2+ sensor-1 (NCS-1) protein is implicated in the pathophysiology of neurodisorders such as schizophrenia, bipolar disturbance and X-linked mental retardation. The mechanism by which NCS-1 would be involved in the causes and/or consequences of these neurodisorders is still far from elucidation. Independent evidence has pointed NCS-1 as a key regulator of synaptic efficacy by altering the expression and activity of voltage-gated channels, inhibiting internalization of dopaminergic receptors, and altering phosphoinositide metabolism. In this study, we examined the possible participation of NCS-1 protein in signal transmission dependent on muscarinic receptor activation, using PC12 cells stably expressing NCS-1 (PC12-NCS-1). Carbachol (CCH; 300 microM) was able to evoke glutamate release more efficiently from PC12-NCS-1 (15.3+/-1.0nmol/mg of protein) than wild type cells (PC12-wt; 8.3+/-0.9nmol/mg of protein). This increase of glutamate release induced by CCH was independent on extracellular Ca2+ influx. Additionally, a larger increase of cytoplasmic levels of InsP3 (663.0+/-63.0 and 310.0+/-39.0% of fluorescence in A.U.) and [Ca2+]i (766.4+/-40.0 and 687.8+/-37.1nmol/L) was observed after CCH stimulus of PC12-NCS-1 compared with PC12-wt. Clearly distinction between intracellular Ca2+ dynamics was also observed in PC12-NCS-1 and PC12-wt. A larger increase followed by fast decay of [Ca2+]i was observed in PC12-NCS-1. A plateau with a delayed decay of [Ca2+]i was characteristic of PC12-wt [Ca2+]i response. Both enhancement of InsP3 production and glutamate release observed in PC12-NCS-1 were blocked by atropine (10 microM). Together, our data show that overexpression of NCS-1 in PC12 cells induces an enhancement of intracellular second messenger and transmitter release dependent on CCH response, suggesting that muscarinic signaling is "up-regulated" in this cell model.
机译:有人提出,神经元Ca2 +传感器1(NCS-1)蛋白的过表达与诸如精神分裂症,双相情感障碍和X连锁性智力低下等神经疾病的病理生理有关。 NCS-1参与这些神经紊乱的原因和/或后果的机制还远未阐明。独立证据指出,NCS-1通过改变电压门控通道的表达和活性,抑制多巴胺能受体的内在化和改变磷酸肌醇的代谢,成为突触功效的关键调节剂。在这项研究中,我们使用稳定表达NCS-1(PC12-NCS-1)的PC12细胞,研究了NCS-1蛋白是否可能参与取决于毒蕈碱受体激活的信号传递。卡巴胆碱(CCH; 300 microM)能够比野生型细胞(PC12-wt; 8.3 +/- 0.9nmol / mg)更有效地引起PC12-NCS-1(15.3 +/- 1.0nmol / mg蛋白质)释放谷氨酸盐蛋白质)。 CCH诱导的谷氨酸释放增加与细胞外Ca2 +内流无关。另外,InsP3(AU中荧光的663.0 +/- 63.0和310.0 +/- 39.0%)和[Ca2 +] i(766.4 +/- 40.0和687.8 +/- 37.1nmol / L)的细胞质水平增加幅度更大与PC12-wt相比,在PC12-NCS-1进行CCH刺激后观察到的结果。在PC12-NCS-1和PC12-wt中也观察到明显的细胞内Ca2 +动力学差异。在PC12-NCS-1中观察到更大的增加,随后[Ca2 +] i快速衰减。 [Ca2 +] i延迟衰减的平台是PC12-wt [Ca2 +] i响应的特征。阿托品(10 microM)阻止了在PC12-NCS-1中观察到的InsP3产生增强和谷氨酸释放。在一起,我们的数据表明PC12细胞中NCS-1的过表达诱导细胞内第二信使的增强和取决于CCH反应的递质释放,这表明毒蕈碱信号在该细胞模型中被“上调”。

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