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秀丽隐杆线虫伊维菌素受体调节运动行为,并且是捻转血矛线虫受体的功能直系同源物。

Caenorhabditis elegans ivermectin receptors regulate locomotor behaviour and are functional orthologues of Haemonchus contortus receptors.

作者信息

Cook Alan, Aptel Nathalie, Portillo Virginia, Siney Elodie, Sihota Rajinder, Holden-Dye Lindy, Wolstenholme Adrian

机构信息

Neurosciences Research Group, School of Biological Sciences, Bassett Crescent East, University of Southampton, Southampton SO16 7PX, UK.

出版信息

Mol Biochem Parasitol. 2006 May;147(1):118-25. doi: 10.1016/j.molbiopara.2006.02.003. Epub 2006 Feb 24.

Abstract

The target site for the anthelmintic action of ivermectin is a family of nematode glutamate-gated chloride channel alpha subunits (GluClalpha) that bind the drug with high affinity and mediate its potent paralytic action. Whilst the action of ivermectin on the pharyngeal muscle of nematodes is relatively well understood, its effect on locomotor activity is less clear. Here we use RNAi and gene knockouts to show that four GluClalpha subunits are involved in regulating the pattern of locomotor activity in Caenorhabditis elegans. A Haemonchus contortus orthologue of these subunits, HcGluClalpha3, has been shown to be expressed in the motor nervous system and here we have shown that it is a functional, as well as a structural, orthologue by virtue of the observation that it can restore normal motor movement in the C. elegans GluClalpha mutant, avr-14(ad1032), when expressed under the control of the avr-14 promoter. This supports the contention that ivermectin exerts its paralytic action on parasitic nematodes through activation of GluCl channels in the motor nervous system. Furthermore, functional complementation in C. elegans provides a method to further the understanding of this important class of anthelmintic targets.

摘要

伊维菌素驱虫作用的靶点是一类线虫谷氨酸门控氯离子通道α亚基(GluClα),该亚基与药物具有高亲和力结合,并介导其强大的麻痹作用。虽然伊维菌素对线虫咽肌的作用相对较为清楚,但其对运动活性的影响尚不太明确。在此,我们利用RNA干扰和基因敲除技术表明,四个GluClα亚基参与调控秀丽隐杆线虫的运动活性模式。这些亚基的捻转血矛线虫直系同源物HcGluClα3已被证明在运动神经系统中表达,并且在此我们已表明它是一个功能和结构上的直系同源物,这是基于以下观察结果:当在avr - 14启动子的控制下表达时,它可以恢复秀丽隐杆线虫GluClα突变体avr - 14(ad1032)的正常运动。这支持了伊维菌素通过激活运动神经系统中的GluCl通道对寄生线虫发挥麻痹作用的观点。此外,秀丽隐杆线虫中的功能互补提供了一种方法,以进一步了解这类重要的驱虫靶点。

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