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Molecular mechanisms supporting a paracrine role of GABA in rat adrenal medullary cells

机译:支持GABA在大鼠肾上腺髓质细胞中旁分泌作用的分子机制

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摘要

GABA is known to produce membrane depolarization and secretion in adrenal medullary (AM) cells in various species. However, whether the GABAergic system is intrinsic or extrinsic or both in the adrenal medulla and the role that GABA plays are controversial. Therefore, these issues were addressed by combining a biochemical and functional analysis. Glutamic acid decarboxylase (GAD), a GABA synthesizing enzyme, and vesicular GABA transporter (VGAT) were expressed in rat AM cells at the mRNA and protein levels, and the adrenal medulla had no nerve fibre-like structures immunoreactive to an anti-GAD Ab. The double staining for VGAT and chromogranin A indicates that GABA was stored in chromaffin granules. The α1, α3, β2/3, γ2 and δ subunits of GABAA receptors were identified in AM cells at the mRNA and protein levels. Pharmacological properties of GABA-induced Cl currents, immunoprecipitation experiments and immunocytochemistry indicated the expression of not only γ2-, but also δ-containing GABAA receptors, which have higher affinities for GABA and neurosteroids. Expression of GATs, which are involved in the clearance of GABA at GABAergic synapses, were conspicuously suppressed in the adrenal medulla, compared with expression levels of GABAA receptors. Increases in Ca2+ signal in AM cells evoked trans-synaptically by nerve stimulation were suppressed during the response to GABA, and this suppression was attributed to the shunt effect of the GABA-induced increase in conductance. Overall Ca2+ responses to electrical stimulation and GABA in AM cells were larger or smaller than those to electrical stimulation alone, depending on the frequency of stimulation. The results indicate that GABA functions as a paracrine in rat AM cells and this function may be supported by the suppression of GAT expression and the expression of not only γ2-, but also δ-GABAA receptors.
机译:已知GABA会在各种物种的肾上腺髓质(AM)细胞中产生膜去极化和分泌作用。然而,在肾上腺髓质中,GABA能系统是内在的还是外在的,或两者兼而有之,GABA发挥的作用是有争议的。因此,通过结合生化和功能分析解决了这些问题。谷氨酸脱羧酶(GAD),一种GABA合成酶和囊泡GABA转运蛋白(VGAT)在mRNA和蛋白质水平在大鼠AM细胞中表达,并且肾上腺髓质没有对抗GAD Ab免疫反应的神经纤维样结构。 。 VGAT和嗜铬粒蛋白A的双重染色表明GABA被储存在嗜铬粒中。在AM细胞中以mRNA和蛋白水平鉴定出GABAA受体的α1,α3,β2/ 3,γ2和δ亚基。 GABA诱导的Cl -电流的药理特性,免疫沉淀实验和免疫细胞化学表明,不仅表达γ2-,而且表达含δ的GABAA受体,它们对GABA和神经甾体的亲和力更高。与GABAA受体的表达水平相比,在肾上腺髓质中明显抑制了参与GABA能突触中GABA清除的GAT的表达。在对GABA的反应过程中,神经刺激反式突触引起的AM细胞中Ca 2 + 信号的增加受到抑制,这种抑制作用归因于GABA诱导的电导增加的分流效应。根据刺激的频率,AM细胞对电刺激和GABA的总体Ca 2 + 响应要大于或仅对电刺激的响应。结果表明,GABA在大鼠AM细胞中起旁分泌作用,并且该功能可以通过抑制GAT表达以及不仅表达γ2-,而且表达δ-GABAA受体来支持。

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