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首页> 外文期刊>The Journal of Experimental Biology >Characterization of the target of ivermectin, the glutamate-gated chloride channel, from Anopheles gambiae
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Characterization of the target of ivermectin, the glutamate-gated chloride channel, from Anopheles gambiae

机译:来自冈比亚按蚊的伊维菌素靶标(谷氨酸门控氯离子通道)的表征

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摘要

The use of insecticide-treated nets and indoor residual insecticides targeting adult mosquito vectors is a key element in malaria control programs. However, mosquito resistance to the insecticides used in these applications threatens malaria control efforts. Recently, the mass drug administration of ivermectin (IVM) has been shown to kill Anopheles gambiae mosquitoes and disrupt Plasmodium falciparum transmission in the field. We cloned the molecular target of IVM from A. gambiae, the glutamate-gated chloride channel (AgGluCl), and characterized its transcriptional patterns, protein expression and functional responses to glutamate and IVM. AgGluCl cloning revealed an unpredicted fourth splice isoform as well as a novel exon and splice site. The predicted gene products contained heterogeneity in the N-terminal extracellular domain and the intracellular loop region. Responses to glutamate and IVM were measured using two-electrode voltage clamp on Xenopus laevis oocytes expressing AgGluCl. IVM induced non-persistent currents in AgGluCl-a1 and did not potentiate glutamate responses. In contrast, AgGluCl-b was insensitive to IVM, suggesting that the AgGluCl gene could produce IVM-sensitive and -insensitive homomultimers fromalternative splicing. AgGluCl isoform-specific transcripts were measured across tissues, ages, blood feeding status and sex, and were found to be differentially transcribed across these physiological variables. Lastly, we stained adult, female A. gambiae for GluCl expression. The channel was expressed in the antenna, Johnston's organ, supraesophageal ganglion and thoracic ganglia. In summary, we have characterized the first GluCl from a mosquito, A. gambiae, and described its unique activity and expression with respect to it as the target of the insecticide IVM.
机译:使用杀虫剂处理过的蚊帐和针对成年蚊媒的室内残留杀虫剂是疟疾控制计划中的关键要素。但是,蚊子对这些应用中使用的杀虫剂具有抗药性,威胁着疟疾控制工作。最近,已表明,伊维菌素(IVM)的大规模药物管理可杀死冈比亚按蚊,并破坏野外恶性疟原虫的传播。我们从冈比亚拟南芥克隆了谷氨酸门控氯化物通道(AgGluCl)的IVM分子靶标,并表征了其转录模式,蛋白质表达以及对谷氨酸和IVM的功能响应。 AgGluCl克隆揭示了一个不可预测的第四剪接同工型,以及一个新的外显子和剪接位点。预测的基因产物在N末端细胞外结构域和细胞内环区域中包含异质性。使用两电极电压钳测量表达AgGluCl的非洲爪蟾卵母细胞对谷氨酸和IVM的反应。 IVM在AgGluCl-a1中诱导了非持久性电流,并且未增强谷氨酸应答。相比之下,AgGluCl-b对IVM不敏感,这表明AgGluCl基因可以通过替代剪接产生IVM敏感和不敏感的同源多聚体。 AgGluCl同工型特异性转录本跨组织,年龄,血液供应状况和性别进行了测量,发现在这些生理变量之间有差异转录。最后,我们对成年雌性冈比亚按蚊进行了GluCl表达染色。该通道在天线,约翰斯顿氏器官,食管上神经节和胸神经节中表达。总而言之,我们表征了来自冈比亚按蚊的第一个GluCl,并描述了其作为杀虫剂IVM的靶标的独特活性和表达。

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