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NAADP-mediated channel 'chatter' in neurons of the rat medulla oblongata.

机译:NAADP介导的大鼠延髓神经元通道“ ch裂”。

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摘要

NAADP (nicotinic acid-adenine dinucleotide phosphate) is a potent Ca(2+)-mobilizing messenger that stimulates Ca(2+) release in a variety of cells. NAADP-sensitive Ca(2+) channels are thought to reside on acidic Ca(2+) stores and to be functionally coupled to IP(3) (inositol 1,4,5-trisphosphate) and/or ryanodine receptors located on the endoplasmic reticulum. Whether NAADP-sensitive Ca(2+) channels 'chatter' to other channels, however, is not clear. In the present study, we have used a cell-permeant NAADP analogue to probe NAADP-mediated responses in rat medulla oblongata neurons. NAADP-AM (NAADP-acetoxymethyl ester) evoked global cytosolic Ca(2+) signals in isolated neurons that were reduced in amplitude by removal of external Ca(2+), abolished by disruption of acidic compartments and substantially inhibited by blockade of ryanodine receptors. In rat medullary slices, NAADP-AM depolarized neurons from the nucleus ambiguus in the presence of intracellular EGTA, but not of the faster Ca(2+) chelator BAPTA [1,2-bis-(o-aminophenoxy)ethane-N,N,N',N'-tetra-acetic acid]. Depolarization was also dependent upon extracellular Ca(2+), acidic stores and ryanodine receptors. In voltage-clamp mode, NAADP-AM induced an inward current with a reversal potential of approx. 0 mV. The results of the present study reveal the presence of acidic NAADP-sensitive Ca(2+) stores in medulla neurons, the mobilization of which results not only in global Ca(2+) signals but also in local signals that activate non-selective cation channels on the cell surface resulting in depolarization. Thus NAADP is capable of co-ordinating channels both within the cell interior and at the cell membrane representing a novel mechanism for excitation of central neurons.
机译:NAADP(烟酸腺嘌呤二核苷酸磷酸)是一种有效的Ca(2+)动员者,可刺激Ca(2+)在各种细胞中的释放。 NAADP敏感的Ca(2+)通道被认为驻留在酸性Ca(2+)的存储上,并在功能上耦合到IP(3)(肌醇1,4,5-三磷酸)和/或位于内质体的ryanodine受体网状。但是,尚不清楚NAADP敏感的Ca(2+)通道是否“抖动”到其他通道。在本研究中,我们已使用细胞渗透性NAADP类似物来探测NAADP介导的大鼠延髓神经元反应。 NAADP-AM(NAADP-乙酰氧基甲基酯)引起孤立的神经元中的全球胞浆Ca(2+)信号,其振幅通过去除外部Ca(2+)降低,通过破坏酸性隔室而被消除,并且基本上受瑞丹碱受体的阻滞作用抑制。在大鼠髓质切片中,NAADP-AM在存在细胞内EGTA的情况下从核模糊核中去极化神经元,但没有更快的Ca(2+)螯合剂BAPTA [1,2-双-(邻氨基苯氧基)乙烷-N,N ,N',N'-四乙酸]。去极化也取决于细胞外Ca(2+),酸性存储和ryanodine受体。在电压钳位模式下,NAADP-AM感应到的内向电流的反向电位约为。 0毫伏。本研究的结果表明,髓质神经元中存在酸性NAADP敏感的Ca(2+)存储,其动员不仅导致全局Ca(2+)信号,而且还导致激活非选择性阳离子的局部信号细胞表面上的通道导致去极化。因此,NAADP能够协调细胞内部和细胞膜上的通道,代表了一种激发中枢神经元的新机制。

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