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Neuropeptide Signaling Systems - Potential Drug Targets for Parasite and Pest Control

机译:神经肽信号系统-寄生虫和害虫控制的潜在药物靶标

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摘要

Current problems of drug resistance in parasites and pests demand the identification of new targets and their exploitation through novel drug design and development programs. Neuropeptide signaling systems in helminths (nematodes and platyhelminths = worms) and arthropods are well developed and complex, play a crucial role in many aspects of their biology, and appear to have significant potential as targets for novel drugs. The best-known neuropeptide family in invertebrates is the FMRFamide-related peptides (FaRPs). Amongst many roles, FaRPs potently influence motor function. The genome sequencing projects of Drosophila melanogaster and Caenorhabditis elegans have revealed unexpected complexity within the FaRPergic systems of arthropods and nematodes, although available evidence for platyhelminths indicates structural and functional simplicity. Regardless of these differences, FaRPs potently modulate motor function in arthropods, nematodes and platyhelminths and there appears to be at least some commonality in the FaRPergic signaling systems therein. Moreover, there is now increasing evidence of cross-phyla activity for individual FaRPs, providing clear signals of opportunities for target selection and the identification and development of broad-spectrum drugs.
机译:当前寄生虫和害虫中的耐药性问题要求确定新的靶标并通过新颖的药物设计和开发计划对其进行开发。蠕虫(线虫和蠕虫=蠕虫)和节肢动物中的神经肽信号传导系统非常发达且复杂,在其生物学的许多方面都起着至关重要的作用,并且有望成为新型药物的靶标。无脊椎动物中最著名的神经肽家族是FMRFamide相关肽(FaRP)。在许多角色中,FaRPs会强烈影响运动功能。果蝇和线虫的基因组测序项目揭示了节肢动物和线虫的FaRPergic系统内意想不到的复杂性,尽管可获得的疟原虫证据表明其结构和功能简单。不管这些差异如何,FaRPs都能有效调节节肢动物,线虫和蠕虫的运动功能,并且其中的FaRPergic信号系统似乎至少有一些共同点。而且,现在有越来越多的证据表明单个FaRP具有跨系统活性,为靶标选择以及广谱药物的鉴定和开发提供了清晰的信号。

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