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寄生线虫的 SLO-1 通道在 slo-1 功能丧失突变体的秀丽隐杆线虫中重建运动行为和 emodepside 敏感性。

SLO-1-channels of parasitic nematodes reconstitute locomotor behaviour and emodepside sensitivity in Caenorhabditis elegans slo-1 loss of function mutants.

机构信息

Institute for Parasitology, University of Veterinary Medicine Hannover, Hannover, Germany.

出版信息

PLoS Pathog. 2011 Apr;7(4):e1001330. doi: 10.1371/journal.ppat.1001330. Epub 2011 Apr 7.

Abstract

The calcium-gated potassium channel SLO-1 in Caenorhabditis elegans was recently identified as key component for action of emodepside, a new anthelmintic drug with broad spectrum activity. In this study we identified orthologues of slo-1 in Ancylostoma caninum, Cooperia oncophora, and Haemonchus contortus, all important parasitic nematodes in veterinary medicine. Furthermore, functional analyses of these slo-1 orthologues were performed using heterologous expression in C. elegans. We expressed A. caninum and C. oncophora slo-1 in the emodepside-resistant genetic background of the slo-1 loss-of-function mutant NM1968 slo-1(js379). Transformants expressing A. caninum slo-1 from C. elegans slo-1 promoter were highly susceptible (compared to the fully emodepside-resistant slo-1(js379)) and showed no significant difference in their emodepside susceptibility compared to wild-type C. elegans (p = 0.831). Therefore, the SLO-1 channels of A. caninum and C. elegans appear to be completely functionally interchangeable in terms of emodepside sensitivity. Furthermore, we tested the ability of the 5' flanking regions of A. caninum and C. oncophora slo-1 to drive expression of SLO-1 in C. elegans and confirmed functionality of the putative promoters in this heterologous system. For all transgenic lines tested, expression of either native C. elegans slo-1 or the parasite-derived orthologue rescued emodepside sensitivity in slo-1(js379) and the locomotor phenotype of increased reversal frequency confirming the reconstitution of SLO-1 function in the locomotor circuits. A potent mammalian SLO-1 channel inhibitor, penitrem A, showed emodepside antagonising effects in A. caninum and C. elegans. The study combined the investigation of new anthelmintic targets from parasitic nematodes and experimental use of the respective target genes in C. elegans, therefore closing the gap between research approaches using model nematodes and those using target organisms. Considering the still scarcely advanced techniques for genetic engineering of parasitic nematodes, the presented method provides an excellent opportunity for examining the pharmacofunction of anthelmintic targets derived from parasitic nematodes.

摘要

秀丽隐杆线虫中的钙门控钾通道 SLO-1 最近被确定为新型广谱驱虫药 emodepside 的作用关键组成部分。在这项研究中,我们鉴定了犬钩虫、奥氏真圆线虫和捻转血矛线虫中 slo-1 的同源物,这些都是兽医中重要的寄生线虫。此外,我们还使用秀丽隐杆线虫中的异源表达对这些 slo-1 同源物进行了功能分析。我们在 slo-1 功能丧失突变体 NM1968 slo-1(js379)的 emodepside 抗性遗传背景下表达了犬钩虫和奥氏真圆线虫 slo-1。来自秀丽隐杆线虫 slo-1 启动子的犬钩虫 slo-1 转化体高度敏感(与完全抗 emodepside 的 slo-1(js379)相比),并且与野生型秀丽隐杆线虫相比,它们对 emodepside 的敏感性没有显著差异(p=0.831)。因此,在 emodepside 敏感性方面,犬钩虫和秀丽隐杆线虫的 SLO-1 通道似乎在功能上完全可互换。此外,我们测试了犬钩虫和奥氏真圆线虫 slo-1 的 5' 侧翼区域驱动 SLO-1 在秀丽隐杆线虫中表达的能力,并在这个异源系统中证实了推定启动子的功能。对于所有测试的转基因株系,无论是天然的秀丽隐杆线虫 slo-1 还是寄生虫衍生的同源物的表达都能恢复 slo-1(js379)对 emodepside 的敏感性,并且增加反转频率的运动表型证实了 slo-1 功能在运动回路中的重建。一种有效的哺乳动物 SLO-1 通道抑制剂 penitrem A 在犬钩虫和秀丽隐杆线虫中显示出 emodepside 拮抗作用。该研究结合了从寄生线虫中研究新的驱虫靶标和在秀丽隐杆线虫中使用相应靶基因的实验,因此缩小了使用模式线虫的研究方法和使用靶标生物的研究方法之间的差距。考虑到寄生线虫遗传工程技术仍相对不发达,本方法为研究源自寄生线虫的驱虫靶标的药理功能提供了极好的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8107/3072372/3a7296147d1c/ppat.1001330.g001.jpg

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