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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Mutations in the extracellular domains of glutamate-gated chloride channel alpha3 and beta subunits from ivermectin-resistant Cooperia oncophora affect agonist sensitivity.
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Mutations in the extracellular domains of glutamate-gated chloride channel alpha3 and beta subunits from ivermectin-resistant Cooperia oncophora affect agonist sensitivity.

机译:伊维菌素抗性库珀(Cooperia oncophora)谷氨酸门控的氯离子通道α3和β亚基的胞外域突变影响激动剂敏感性。

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Abstract Two full-length glutamate-gated chloride channel (GluCl) cDNAs, encoding GluClalpha3 and GluClbeta subunits, were cloned from ivermectin-susceptible (IVS) and -resistant (IVR) Cooperia oncophora adult worms. The IVS and IVR GluClalpha3 subunits differ at three amino acid positions, while the IVS and IVR GluClbeta subunits differ at two amino acid positions. The aim of this study was to determine whether mutations in the IVR subunits affect agonist sensitivity. The subunits were expressed singly and in combination in Xenopus laevis oocytes. Electrophysiological whole-cell voltage-clamp recordings showed that mutations in the IVR GluClalpha3 caused a modest but significant threefold loss of sensitivity to glutamate, the natural ligand for GluCl receptors. As well, a significant decrease in sensitivity to the anthelmintics ivermectin and moxidectin was observed in the IVR GluClalpha3 receptor. Mutations in the IVR GluClbeta subunit abolished glutamate sensitivity. Co-expressing the IVS GluClalpha3 and GluClbeta subunits resulted in heteromeric channels that were more sensitive to glutamate than the respective homomeric channels, demonstrating co-assembly of the subunits. In contrast, the heteromeric IVR channels were less sensitive to glutamate than the homomeric IVR GluClalpha3 channels. The heteromeric IVS channels were significantly more sensitive to glutamate than the heteromeric IVR channels. Of the three amino acids distinguishing the IVS and IVR GluClalpha3 subunits, only one of them, L256F, accounted for the differences in response between the IVS and IVR GluClalpha3 homomeric channels.
机译:摘要从伊维菌素敏感性(IVS)和抗性(IVR)Cooperia oncophora成虫中克隆了两个全长谷氨酸门控氯通道(GluCl)cDNA,分别编码GluClalpha3和GluClbeta亚基。 IVS和IVR GluClalpha3亚基在三个氨基酸位置不同,而IVS和IVRGluClbetaβ亚基在两个氨基酸位置不同。这项研究的目的是确定IVR亚基中的突变是否影响激动剂敏感性。亚基在非洲爪蟾卵母细胞中单独或组合表达。电生理全细胞电压钳记录显示,IVR GluClalpha3中的突变引起对谷氨酸(GluCl受体的天然配体)的敏感性适度但显着三倍下降。同样,在IVR GluClalpha3受体中观察到对驱虫药伊维菌素和莫昔克丁的敏感性显着下降。 IVR GluClbeta亚基中的突变消除了谷氨酸敏感性。共表达IVS GluClalpha3和GluClbeta亚基产生的异源通道对谷氨酸的敏感性高于相应的同质异源通道,表明这些亚基的共组装。相反,异源IVR通道对谷氨酸的敏感性低于同质IVR GluClalpha3通道。异源IVS通道对谷氨酸的敏感性比异源IVR通道高得多。在区分IVS和IVR GluClalpha3亚基的三个氨基酸中,只有一个L256F解释了IVS和IVR GluClalpha3同质通道之间响应的差异。

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