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A mutational and molecular dynamics study of the cys-loop GABA receptor Hco-UNC-49 from Haemonchus contortus: Agonist recognition in the nematode GABA receptor family

机译:来自Haemonchus incortus的Cys-Loop Gaba受体HCO-UNC-49的突变和分子动力学研究:Nematode Gaba受体家庭中的激动剂识别

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摘要

The UNC-49 receptor is a unique nematode γ-aminobutyric acid (GABA)-gated chloride channel that may prove to be a novel target for the development of nematocides. Here we have characterized various charged amino acid residues in and near the agonist binding site of the UNC-49 receptor from the parasitic nematode Haemonchus contorts. Utilizing the Caenorhabditis elegans GluCl crystal structure as a template, a model was generated and various charged residues [D83 (loop D), E131 (loop A), H137 (pre-loop E), R159 (Loop E), E185 (Loop B) and R241 (Loop C)] were investigated based on their location and conservation. These residues may contribute to structure, function, and molecular interactions with agonists. It was found that all residues chosen were important for receptor function to varying degrees. Results of the mutational analysis and molecular simulations suggest that R159 may be interacting with D83 by an ionic interaction that may be crucial for general GABA receptor function. We have used the results from this study as well as knowledge of residues involved in GABA receptor binding to identify sequence patterns that may assist in understanding the function of lesser known GABA receptor subunits from parasitic nematodes. Keywords: Haemonchus contortus, UNC-49 GABA receptor, Mutagenesis, Molecular dynamics, Agonist recognition
机译:UNC-49受体是一种独特的线虫γ-氨基丁酸(GABA)氯化物通道,其可以证明是Nematocides的开发的新靶标。在这里,我们已经表征了来自寄生线虫Haemonchus的UNC-49受体的激动剂结合位点和附近的各种带电氨基酸残基。利用CaenorhabditisEgiss Glucl晶体结构作为模板,产生模型,并产生各种带电的残余物[D83(环D),E131(环A),H137(循环e),R159(环E),E185(环B基于其位置和保护,研究了R241(环C)。这些残留物可能有助于与激动剂的结构,功能和分子相互作用。发现所选择的所有残留物对受体功能至不同程度来说是重要的。突变分析和分子模拟的结果表明R159可以通过对一般GABA受体功能至关重要的离子相互作用与D83相互作用。我们使用本研究的结果以及参与GABA受体结合的残留物的知识,以鉴定可以有助于理解从寄生线虫的较小的GABA受体亚基功能的序列模式。关键词:Haemonchus incortus,Unc-49 gaba受体,诱变,分子动力学,激动剂识别

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