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蜘蛛机械感受器神经元感觉转导过程中钙升高的区域分布。

Regional distribution of calcium elevation during sensory transduction in spider mechanoreceptor neurons.

作者信息

Höger Ulli, Meisner Shannon, Torkkeli Päivi H, French Andrew S

机构信息

Department of Physiology and Biophysics, Dalhousie University, 5850 College Street, Halifax, Nova Scotia, Canada B3H 1X5.

出版信息

Neurosci Res. 2008 Dec;62(4):278-85. doi: 10.1016/j.neures.2008.09.006. Epub 2008 Oct 4.

Abstract

Spider mechanosensory VS-3 neurons receive peripheral efferent synaptic modulation, with regional variations in the types of efferent synapses and transmitter receptors. VS-3 somata possess a voltage-activated calcium current, but the levels and time courses of calcium changes in other regions are unknown. The roles of calcium in these neurons are not completely understood, but could include modulation of both mechanosensitivity and response dynamics. Here, we measured calcium concentration rises caused by single, mechanically induced action potentials in VS-3 sensory dendrites, somata and axons, using Oregon Green BAPTA-1 fluorescence. Calcium concentration rose by approximately 1 nM following each action potential. Time courses of calcium rise and fall were similar in the three regions but the rise in amplitude was about 50% higher in the sensory dendrite than in the soma. Antibody to the Ca(V)3.1(alpha(1g)) isotype of T-type calcium channel labeled all three neuronal regions. Some Ca(V)3.1 labeling colocalized with synapsin labeling, suggesting that calcium channels play some part in efferent modulation. We conclude that mechanically stimulated action potentials start near sensory dendrite tips and pass rapidly through the neurons to the axons, activating low voltage activated calcium channels in all three regions and causing calcium concentration to rise rapidly in each region. These results suggest important roles for calcium in several stages of mechanosensation.

摘要

蜘蛛机械感觉VS-3神经元接受外周传出突触调制,在传出突触和递质受体类型上存在区域差异。VS-3胞体具有电压激活的钙电流,但其他区域钙变化的水平和时程尚不清楚。钙在这些神经元中的作用尚未完全了解,但可能包括对机械敏感性和反应动力学的调制。在这里,我们使用俄勒冈绿BAPTA-1荧光测量了VS-3感觉树突、胞体和轴突中单个机械诱导动作电位引起的钙浓度升高。每次动作电位后钙浓度升高约1 nM。钙升高和下降的时程在三个区域相似,但感觉树突中的升高幅度比胞体高约50%。T型钙通道Ca(V)3.1(α(1g))亚型的抗体标记了所有三个神经元区域。一些Ca(V)3.1标记与突触素标记共定位,表明钙通道在传出调制中起一定作用。我们得出结论,机械刺激的动作电位从感觉树突尖端附近开始,迅速穿过神经元到达轴突,激活所有三个区域的低电压激活钙通道,并导致每个区域的钙浓度迅速升高。这些结果表明钙在机械感觉的几个阶段中起重要作用。

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