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Nematode cys-loop GABA receptors: biological function, pharmacology and sites of action for anthelmintics

机译:线虫半胱氨酸环GABA受体:驱虫药的生物学功能,药理作用和作用部位

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Parasitic nematode infection of humans and livestock is a major problem globally. Attempts to control nematode populations have led to the development of several classes of anthelmintic, which target cys-loop ligand-gated ion channels. Unlike the vertebrate nervous system, the nematode nervous system possesses a large and diversified array of ligand-gated chloride channels that comprise key components of the inhibitory neurotransmission system. In particular, cys-loop GABA receptors have evolved to play many fundamental roles in nematode behaviour such as locomotion. Analysis of the genomes of several free-living and parasitic nematodes suggests that there are several groups of cys-loop GABA receptor subunits that, for the most part, are conserved among nematodes. Despite many similarities with vertebrate cys-loop GABA receptors, those in nematodes are quite distinct in sequence similarity, subunit composition and biological function. With rising anthelmintic resistance in many nematode populations worldwide, GABA receptors should become an area of increased scientific investigation in the development of the next generation of anthelmintics.
机译:人类和牲畜的寄生线虫感染是全球范围内的主要问题。控制线虫种群的尝试已导致开发了几类驱虫药,它们以cys环配体门控离子通道为目标。与脊椎动物的神经系统不同,线虫的神经系统拥有大量多样的配体门控氯离子通道,这些通道包含抑制性神经传递系统的关键成分。特别是,cys-loop GABA受体已经进化为在线虫行为(例如运动)中起许多基本作用。对几种自由生存和寄生的线虫的基因组分析表明,有几组cys-loop GABA受体亚基在大多数线虫中是保守的。尽管与脊椎动物的cys-loop GABA受体有很多相似性,但线虫中的那些在序列相似性,亚基组成和生物学功能上却截然不同。随着全世界许多线虫种群中驱虫药耐药性的提高,在下一代驱虫药的开发中,GABA受体应成为越来越多的科学研究领域。

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