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钙离子对蜘蛛机械感受器转导的反馈调节。

Feedback modulation of transduction by calcium in a spider mechanoreceptor.

机构信息

Department of Physiology and Biophysics, Dalhousie University, Halifax, NS B3H 1X5, Canada.

出版信息

Eur J Neurosci. 2010 Nov;32(9):1473-9. doi: 10.1111/j.1460-9568.2010.07407.x. Epub 2010 Oct 7.

Abstract

Calcium ions play important roles in the adaptation of auditory hair cells, and there is evidence that they are involved in modifying the sensitivity and adaptation of a variety of vertebrate and invertebrate mechanoreceptors. However, there is little direct evidence concerning the concentration changes, signaling pathways or ultimate effects of these proposed modulatory mechanisms. We measured receptor potential, receptor current and action potentials intracellularly during mechanotransduction in a group of sensory neurons of the spider Cupiennius salei, which possesses low-voltage-activated calcium channels. Simultaneously, we elevated intracellular [Ca(2+) ] by UV light release from cage molecules, and observed increases in [Ca(2+) ] as changes in calcium-sensitive dye fluorescence. Increases of 10-15% in [Ca(2+) ] caused reductions of approximately 40% in receptor potential and approximately 20% in receptor current. Mechanically evoked action potential firing caused much larger increases in [Ca(2+) ], and the firing rate fell as [Ca(2+) ] rose during mechanical stimulation. Release of caged calcium just before mechanical stimulation significantly reduced peak firing. Dose-response measurements suggested that the binding of one or two intracellular calcium ions per channel reduces the probability of the mechanotransduction channel being open. Our data indicate that calcium regulates sensitivity in these mechanoreceptor neurons by negative feedback from action potentials onto transduction channels.

摘要

钙离子在听觉毛细胞的适应中发挥重要作用,有证据表明它们参与调节多种脊椎动物和无脊椎动物机械感受器的敏感性和适应。然而,关于这些拟议的调节机制的浓度变化、信号通路或最终效应,几乎没有直接证据。我们在蜘蛛 Cupiennius salei 的一组感觉神经元中进行机械转导时,测量了受体电位、受体电流和动作电位,这些神经元具有低电压激活的钙通道。同时,我们通过笼状分子的紫外光释放来提高细胞内 [Ca(2+)],并观察钙敏染料荧光变化引起的 [Ca(2+)]增加。[Ca(2+)]增加 10-15%导致受体电位减少约 40%,受体电流减少约 20%。机械诱发的动作电位放电引起 [Ca(2+)]的更大增加,并且在机械刺激期间,[Ca(2+)]升高时放电率下降。在机械刺激前释放笼状钙可显著降低峰值放电。剂量反应测量表明,每个通道结合一个或两个细胞内钙离子会降低机械转导通道开放的概率。我们的数据表明,钙离子通过动作电位对转导通道的负反馈来调节这些机械感受器神经元的敏感性。

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