首页> 美国卫生研究院文献>Journal of Neurophysiology >Cellular and Molecular Properties of Neurons: Transient voltage-activated K+ currents in central antennal lobe neurons: cell type-specific functional properties
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Cellular and Molecular Properties of Neurons: Transient voltage-activated K+ currents in central antennal lobe neurons: cell type-specific functional properties

机译:神经元的细胞和分子特性:中央触角神经元中的瞬态电压激活的K +电流:特定于细胞类型的功能特性

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摘要

In this study we analyzed transient voltage-activated K+ currents (IA) of projection neurons and local interneurons in the antennal lobe of the cockroach Periplaneta americana. The antennal lobe is the first synaptic processing station for olfactory information in insects. Local interneurons are crucial for computing olfactory information and form local synaptic connections exclusively in the antennal lobe, whereas a primary task of the projection neurons is the transfer of preprocessed olfactory information from the antennal lobe to higher order centers in the protocerebrum. The different physiological tasks of these neurons require specialized physiological and morphological neuronal phenotypes. We asked if and how the different physiological phenotypes are reflected in the functional properties of IA, which is crucial for shaping intrinsic electrophysiological properties of neurons. Whole cell patch-clamp recordings from adult male P. americana showed that all their central antennal lobe neurons can generate IA. The current exhibited marked cell type-specific differences in voltage dependence of steady-state activation and inactivation, and differences in inactivation kinetics during sustained depolarization. Pharmacological experiments revealed that IA in all neuron types was partially blocked by α-dendrotoxin and phrixotoxin-2, which are considered blockers with specificity for Shaker- and Shal-type channels, respectively. These findings suggest that IA in each cell type is a mixed current generated by channels of both families. The functional role of IA was analyzed in experiments under current clamp, in which portions of IA were blocked by α-dendrotoxin or phrixotoxin-2. These experiments showed that IA contributes significantly to the intrinsic electrophysiological properties, such as the action potential waveform and membrane excitability.>NEW & NOTEWORTHY In the insect olfactory system, projection neurons and local interneurons have task-specific electrophysiological and morphological phenotypes. Voltage-activated potassium channels play a crucial role in shaping functional properties of these neurons. This study revealed marked cell type-specific differences in the biophysical properties of transient voltage-activated potassium currents in central antennal lobe neurons.
机译:在这项研究中,我们分析了美洲Per触角的投射神经元和局部中间神经元的瞬态电压激活的K + 电流(IA)。触角叶是昆虫中嗅觉信息的第一个突触处理站。局部神经元对于计算嗅觉信息至关重要,并且仅在触角叶中形成局部突触连接,而投射神经元的主要任务是将预处理的嗅觉信息从触角叶转移到前脑的更高阶中心。这些神经元的不同生理任务需要专门的生理和形态神经元表型。我们询问是否以及如何在IA的功能特性中反映出不同的生理表型,这对于塑造神经元的内在电生理特性至关重要。成年雄性美洲假单胞菌的全细胞膜片钳记录表明,它们的所有中央触角叶神经元都可以产生IA。电流在稳态激活和失活的电压依赖性方面表现出明显的细胞类型特异性差异,在持续去极化过程中的失活动力学方面也存在差异。药理实验表明,所有神经元类型的IA均被α-树突毒素和phrixotoxin-2部分阻断,它们分别被认为对Shaker型和Shal型通道具有特异性。这些发现表明,每种细胞类型的IA都是两个家族的通道产生的混合电流。在电流钳下的实验中分析了IA的功能性作用,其中IA的一部分被α-树突毒素或phrixotoxin-2阻断。这些实验表明,IA对内在的电生理特性有显着贡献,如动作电位波形和膜兴奋性。> NEW&NOTEWORTHY 在昆虫的嗅觉系统中,投射神经元和局部中间神经元具有特定的任务性电生理特性。形态表型。电压激活的钾离子通道在塑造这些神经元的功能特性中起着至关重要的作用。这项研究揭示了中央触角叶神经元中瞬时电压激活的钾电流的生物物理特性中明显的细胞类型特异性差异。

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