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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Study of the nematode putative GABA type-A receptor subunits: evidence for modulation by ivermectin.
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Study of the nematode putative GABA type-A receptor subunits: evidence for modulation by ivermectin.

机译:线虫推定的GABA A型受体亚单位的研究:伊维菌素调节的证据。

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摘要

Two alleles of the HG1 gene, which encodes a putative GABA receptor alpha/gamma subunit, were isolated from Haemonchus contortus. These two alleles were shown previously to be associated with ivermectin susceptibility (HG1A) and resistance (HG1E), respectively. Sequence analysis indicates that they differ in four amino acids. To explore the functional properties of the two alleles, a full-length cDNA encoding the beta subunit, a key functional component of the GABA receptor, was isolated from Caenorhabditis elegans (gab-1, corresponding to the GenBank locus ZC482.1) and coexpressed in Xenopus oocytes with the HG1 alleles. When gab-1 was coexpressed with either the HG1A allele or the HG1E allele in Xenopus oocytes, gamma-aminobutyric acid (GABA)-responsive channels with different sensitivity to the agonist were formed. The effects of ivermectin on the hetero-oligomeric receptors were determined. Application of ivermectin alone had no effect on the receptors. However, when coapplied with 10 micro m GABA,ivermectin potentiated the GABA-evoked current of the GAB-1/HG1A receptor, but attenuated the GABA response of the GAB-1/HG1E receptor. We demonstrated that the coexpressed HG1 and GAB-1 receptors are GABA-responsive, and provide evidence for the possible involvement of GABA receptors in the mechanism of ivermectin resistance.
机译:从捻转血矛线虫中分离出编码假定的GABA受体α/γ亚基的HG1基因的两个等位基因。先前显示这两个等位基因分别与伊维菌素敏感性(HG1A)和耐药性(HG1E)相关。序列分析表明它们在四个氨基酸上不同。为了探索这两个等位基因的功能特性,从秀丽隐杆线虫(gaen-1,对应于GenBank基因座ZC482.1)中分离出编码β亚基(GABA受体的关键功能成分)的全长cDNA。在非洲爪蟾卵母细胞中带有HG1等位基因。当gab-1与非洲爪蟾卵母细胞中的HG1A等位基因或HG1E等位基因共表达时,形成了对激动剂具有不同敏感性的γ-氨基丁酸(GABA)响应通道。确定了伊维菌素对异寡聚受体的作用。单独使用伊维菌素对受体没有影响。然而,当与10微米GABA共同使用时,伊维菌素增强了GAB-1 / HG1A受体的GABA诱发电流,但减弱了GAB-1 / HG1E受体的GABA反应。我们证明了共表达的HG1和GAB-1受体是GABA响应的,并提供了GABA受体可能参与伊维菌素耐药性机制的证据。

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