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同种型 RDL 和异种型 RDL/LCCH3 GABA 受体在蜜蜂触角叶中的表达:嗅觉加工中抑制性传递的两个候选者。

Homomeric RDL and heteromeric RDL/LCCH3 GABA receptors in the honeybee antennal lobes: two candidates for inhibitory transmission in olfactory processing.

机构信息

Centre de Recherches sur la Cognition Animale, Université Paul Sabatier (Toulouse III), CNRS UMR 5169, 118 route de Narbonne, Toulouse Cedex 9, France.

出版信息

J Neurophysiol. 2010 Jan;103(1):458-68. doi: 10.1152/jn.00798.2009. Epub 2009 Nov 11.

Abstract

gamma-Aminobutyric acid (GABA)-gated chloride channel receptors are abundant in the CNS, where their physiological role is to mediate fast inhibitory neurotransmission. In insects, this inhibitory transmission plays a crucial role in olfactory information processing. In an effort to understand the nature and properties of the ionotropic receptors involved in these processes in the honeybee Apis mellifera, we performed a pharmacological and molecular characterization of GABA-gated channels in the primary olfactory neuropile of the honeybee brain-the antennal lobe (AL)-using whole cell patch-clamp recordings coupled with single-cell RT-PCR. Application of GABA onto AL cells at -110 mV elicited fast inward currents, demonstrating the existence of ionotropic GABA-gated chloride channels. Molecular analysis of the GABA-responding cells revealed that both subunits RDL and LCCH3 were expressed out of the three orthologs of Drosophila melanogaster GABA-receptor subunits encoded within the honeybee genome (RDL, resistant to dieldrin; GRD, GABA/glycine-like receptor of Drosophila; LCCH3, ligand-gated chloride channel homologue 3), opening the door to possible homo- and/or heteromeric associations. The resulting receptors were activated by insect GABA-receptor agonists muscimol and CACA and blocked by antagonists fipronil, dieldrin, and picrotoxin, but not bicuculline, displaying a typical RDL-like pharmacology. Interestingly, increasing the intracellular calcium concentration potentiated GABA-elicited currents, suggesting a modulating effect of calcium on GABA receptors possibly through phosphorylation processes that remain to be determined. These results indicate that adult honeybee AL cells express typical RDL-like GABA receptors whose properties support a major role in synaptic inhibitory transmission during olfactory information processing.

摘要

γ-氨基丁酸(GABA)门控氯离子通道受体在中枢神经系统中丰富存在,其生理作用是介导快速抑制性神经传递。在昆虫中,这种抑制性传递在嗅觉信息处理中起着至关重要的作用。为了了解参与这些过程的离子型受体的性质和特性,我们使用全细胞膜片钳记录技术结合单细胞 RT-PCR,对蜜蜂大脑初级嗅觉神经原——触角叶(AL)中的 GABA 门控通道进行了药理学和分子特征分析。在-110 mV 下将 GABA 施加到 AL 细胞上,可引发快速内向电流,表明存在离子型 GABA 门控氯离子通道。对 GABA 反应细胞的分子分析表明,在所编码的三种蜜蜂基因组中的果蝇 GABA 受体亚基的同源物(RDL,对狄氏剂有抗性;GRD,果蝇 GABA/甘氨酸样受体;LCCH3,配体门控氯离子通道同源物 3)中,只有 RDL 和 LCCH3 这两个亚基表达出来,这为可能的同型和/或异型二聚体形成打开了大门。所得受体被昆虫 GABA 受体激动剂 muscimol 和 CACA 激活,并被拮抗剂 fipronil、狄氏剂和 picrotoxin 阻断,但不被 bicuculline 阻断,显示出典型的 RDL 样药理学。有趣的是,增加细胞内钙离子浓度可增强 GABA 引发的电流,表明钙离子对 GABA 受体可能通过尚待确定的磷酸化过程具有调节作用。这些结果表明,成年蜜蜂 AL 细胞表达典型的 RDL 样 GABA 受体,其特性支持在嗅觉信息处理过程中突触抑制性传递中的主要作用。

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