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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Negative modulation of the GABA A GABA A A ρ1 receptor function by l l ‐cysteine
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Negative modulation of the GABA A GABA A A ρ1 receptor function by l l ‐cysteine

机译:GABA A GABA Aρ1受体通过L L L L-Cysteine的负调节

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摘要

Abstract l ‐Cysteine is an endogenous sulfur‐containing amino acid with multiple and varied roles in the central nervous system, including neuroprotection and the maintenance of the redox balance. However, it was also suggested as an excitotoxic agent implicated in the pathogenesis of neurological disorders such as Parkinson′s and Alzheimer′s disease. l ‐Cysteine can modulate the activity of ionic channels, including voltage‐gated calcium channels and glutamatergic NMDA receptors, whereas its effects on GABA ergic neurotransmission had not been studied before. In the present work, we analyzed the effects of l ‐cysteine on responses mediated by homomeric GABA A ρ1 receptors, which are known for mediating tonic γ‐aminobutyric acid ( GABA ) responses in retinal neurons. GABA A ρ1 receptors were expressed in Xenopus laevis oocytes and GABA ‐evoked chloride currents recorded by two‐electrode voltage‐clamp in the presence or absence of l ‐cysteine. l ‐Cysteine antagonized GABA A ρ1 receptor‐mediated responses; inhibition was dose‐dependent, reversible, voltage independent, and susceptible to GABA concentration. Concentration‐response curves for GABA were shifted to the right in the presence of l ‐cysteine without a substantial change in the maximal response. l ‐Cysteine inhibition was insensitive to chemical protection of the sulfhydryl groups of the ρ1 subunits by the irreversible alkylating agent N ‐ethyl maleimide. Our results suggest that redox modulation is not involved during l ‐cysteine actions and that l ‐cysteine might be acting as a competitive antagonist of the GABA A ρ1 receptors.
机译:摘要L-琥珀酸盐是一种内源性硫含氨基酸,中枢神经系统中具有多种和多种作用,包括神经保护和氧化还原平衡的维持。然而,它也表明是一种兴奋毒剂,涉及神经系统疾病的发病机制,如帕金森和阿尔茨海默病。 L-琥珀酸盐可以调节离子通道的活性,包括电压门控钙通道和谷氨酰胺NMDA受体,而以前尚未研究其对GABA ERGIC神经递血的影响。在本作研究中,我们分析了L-琥珀酸盐对由均方GABAρ1受体介导的反应的影响,该受体已知用于在视网膜神经元中介导滋补γ-氨基丁酸(GABA)反应。 GABA Aρ1受体在Xenopus Laevis卵母细胞中表达,并在L-环盐的存在或不存在中记录的双电极电压夹具记录的GABA升高的氯化物电流。 l-胞嘧啶拮抗gaba aρ1受体介导的反应;抑制是剂量依赖性的,可逆的,电压无关,并且易受GABA浓度的影响。 GABA的浓度 - 反应曲线在L-琥珀酸盐存在下向右移动,而不会在最大反应中的大量变化。 L-环盐抑制对ρ1亚基的巯基的化学保护不敏感,不可逆烷基化剂N-乙基马来酰亚胺。我们的研究结果表明,在L-环盐的作用期间,氧化还原调制不涉及,L-胞嘧啶可能作为GABAρ1受体的竞争性拮抗剂。

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