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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >An activity-dependent increased role for L-type calcium channels in exocytosis is regulated by adrenergic signaling in chromaffin cells.
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An activity-dependent increased role for L-type calcium channels in exocytosis is regulated by adrenergic signaling in chromaffin cells.

机译:L型钙通道在胞吐作用中的活性依赖性增加的作用受嗜铬细胞中肾上腺素信号传导的调节。

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Chromaffin cells of the adrenal medulla represent a primary output of the sympathetic nervous system. Their electrical stimulation evokes the fusion of large dense core granules with the cell membrane and the exocytic release of multiple transmitter molecules into the circulation. There the transmitters contribute to the regulation of basic metabolism of the organism. Under physiological activity, granule fusion and transmitter release are limited by activity-dependent Ca(2+) influx, entering through multiple isoforms of voltage-gated calcium channels. In this study we utilize perforated-patch voltage-clamp recordings and depolarize mouse chromaffin cells in situ with action potential-like waveforms to mimic physiological firing. We measure calcium influx through specific isoforms and measure cell capacitance as an index of granule fusion. Combining these approaches we calculate specific stimulus-secretion efficiencies for L-type, N-type, P/Q-type and R-type calcium channels under varied physiological activity levels. Current influx through all channel subtypes exhibited an activity-dependent depression. As expected P/Q-type channels, while responsible for modest Ca(2+) influx, are tightly coupled to catecholamine secretion under all conditions. We further find that stimulation designed to match sympathetic input under the acute stress response recruits L-type channels to a state of enhanced stimulus-secretion efficiency. N- and R-type channels do not undergo activity-dependent recruitment and remain loosely coupled to the secretion. Thus, only L-type channels exhibit activity-dependent changes in their stimulus-secretion function under physiological stimulation. Lastly, we show that treatment with the beta-adrenergic agonist, isoproterenol, specifically blocks the increase in the stimulus-secretion function of L-type channels. Thus, increased cell firing specifically enhances stimulus-secretion coupling of L-type Ca(2+) channels in chromaffin cells in situ. This mechanism is regulated by an adrenergic signaling pathway.
机译:肾上腺髓质的嗜铬细胞代表交感神经系统的主要输出。它们的电刺激唤起了大而密的核心颗粒与细胞膜的融合,以及多种递质分子向细胞外释放。在那里,递质有助于调节生物的基本代谢。在生理活动下,颗粒融合和递质释放受活动依赖的Ca(2+)涌入的限制,该活动通过电压门控钙通道的多种同工型进入。在这项研究中,我们利用穿孔膜片钳电压记录,并以动作电位样波形原位对小鼠嗜铬细胞进行去极化,以模仿生理放电。我们通过特定的同工型来测量钙的流入,并测量细胞电容作为颗粒融合的指标。结合这些方法,我们计算了在各种生理活动水平下L型,N型,P / Q型和R型钙通道的特定刺激分泌效率。通过所有通道亚型的电流涌入表现出活动依赖性抑郁。如预期的P / Q型通道,虽然适度的Ca(2+)涌入,但在所有情况下都与儿茶酚胺分泌紧密相关。我们进一步发现,旨在与急性应激反应下的交感神经输入相匹配的刺激将L型通道募集到增强的刺激分泌效率状态。 N型和R型通道不进行依赖活动的募集,并且与分泌物保持松散耦合。因此,在生理刺激下,只有L型通道在其刺激分泌功能上表现出活动依赖性变化。最后,我们表明用β-肾上腺素能激动剂异丙肾上腺素治疗可以特异性地阻止L型通道的刺激分泌功能的增加。因此,增加的细胞发射特别增强了嗜铬细胞原位L型Ca(2+)通道的刺激-分泌耦合。该机制由肾上腺素信号传导途径调节。

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