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Apical and basal neurones isolated from the mouse vomeronasal organ differ for voltage-dependent currents

机译:从小鼠犁鼻器器官中分离出的根尖和基底神经元的电压依赖性电流不同

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摘要

The mammalian vomeronasal organ (VNO) contains specialized neurones that transduce the chemical information related to pheromones into discharge of action potentials to the brain. Molecular and biochemical studies have shown that specific components of the pheromonal transduction systems are segregated into two distinct subsets of vomeronasal neurones: apical neurones and basal neurones. However, it is still unknown whether these neuronal subsets also differ in other functional characteristics, such as their membrane properties. We addressed this issue by studying the electrophysiological properties of vomeronasal neurones isolated from mouse VNO. We used the patch-clamp technique to examine both the passive membrane properties and the voltage-gated Na+, K+ and Ca2+ currents. Apical neurones were distinguished from basal ones by the length of their dendrites and by their distinct immunoreactivity for the putative pheromone receptor V2R2. The analysis of passive properties revealed that there were no significant differences between the two neuronal subsets. Also, apical neurones were similar to basal neurones in their biophysical and pharmacological properties of voltage-gated Na+ and K+ currents. However, we found that the density of Na+ currents was about 2-3 times greater in apical neurones than in basal neurones. Consistently, in situ hybridization analysis revealed a higher expression of the Na+ channel subtype III in apical neurones than in basal ones. In contrast, basal neurones were endowed with Ca2+ currents (T-type) of greater magnitude than apical neurones. Our findings indicate that apical and basal neurones in the VNO exhibit distinct electrical properties. This might have a profound effect on the sensory processes occurring in the VNO during pheromone detection.
机译:哺乳动物的犁鼻器器官(VNO)包含专门的神经元,这些神经元将与信息素有关的化学信息转化为大脑的动作电位。分子和生化研究表明,信息素转导系统的特定成分被分为犁鼻神经元的两个不同子集:顶神经元和基底神经元。然而,仍然未知这些神经元子集是否在其他功能特性(例如其膜特性)方面也有所不同。我们通过研究从小鼠VNO分离出的犁鼻神经元的电生理特性来解决此问题。我们使用膜片钳技术来检查被动膜特性和电压门控Na + ,K + 和Ca 2 + 电流。根尖神经元的树突长度和对假定的信息素受体V2R2的独特免疫反应性使其与基底神经元区分开。对被动属性的分析表明,两个神经元子集之间没有显着差异。而且,顶端神经元在电压门控Na + 和K + 电流的生物物理和药理特性方面与基底神经元相似。然而,我们发现顶端神经元中Na + 电流的密度约为基底神经元的2-3倍。一致地,原位杂交分析显示,在根尖神经元中,Na + 通道亚型III的表达高于基底神经元。相反,基底神经元被赋予比顶端神经元更大的Ca 2 + 电流(T型)。我们的发现表明,VNO中的根尖和基底神经元表现出独特的电学性质。这可能对信息素检测期间VNO中发生的感觉过程产生深远影响。

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