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转录因子 SKN-1 和解毒基因 ugt-22 改变了秀丽隐杆线虫中阿苯达唑的疗效。

The transcription factor SKN-1 and detoxification gene ugt-22 alter albendazole efficacy in Caenorhabditis elegans.

机构信息

Department of Biology, University of Florida, Gainesville, FL 32611, USA.

Department of Biology, University of Florida, Gainesville, FL 32611, USA.

出版信息

Int J Parasitol Drugs Drug Resist. 2018 Aug;8(2):312-319. doi: 10.1016/j.ijpddr.2018.04.006. Epub 2018 Apr 25.

Abstract

Parasitic nematodes infect over 1/4 th of the human population and are a major burden on livestock and crop production. Benzimidazole class anthelmintics are widely used to treat infections, but resistance is a widespread problem. Mutation of genes encoding the benzimidazole target β-tubulin is a well-established mechanism of resistance, but recent evidence suggests that metabolism of the drugs may also occur. Our objective was to investigate contributions of the detoxification-response transcription factor SKN-1 to anthelmintic drug resistance using C. elegans. We find that skn-1 mutations alter EC of the common benzimidazole albendazole in motility assays by 1.5-1.7 fold. We also identify ugt-22 as a detoxification gene associated with SKN-1 that influences albendazole efficacy. Mutation and overexpression of ugt-22 alter albendazole EC by 2.3-2.5-fold. The influence of a nematode UGT on albendazole efficacy is consistent with recent studies demonstrating glucose conjugation of benzimidazoles.

摘要

寄生虫线虫感染了超过四分之一的人类,是畜牧业和作物生产的主要负担。苯并咪唑类驱虫药被广泛用于治疗感染,但耐药性是一个普遍存在的问题。编码苯并咪唑靶标β-微管蛋白的基因突变是一种成熟的耐药机制,但最近的证据表明,药物代谢也可能发生。我们的目标是使用秀丽隐杆线虫研究解毒反应转录因子 SKN-1 对驱虫药耐药性的贡献。我们发现 skn-1 突变使常见的苯并咪唑类药物阿苯达唑在运动试验中的 EC 改变了 1.5-1.7 倍。我们还确定了 ugt-22 作为与 SKN-1 相关的解毒基因,它影响阿苯达唑的疗效。ugt-22 的突变和过表达使阿苯达唑的 EC 改变了 2.3-2.5 倍。线虫 UGT 对阿苯达唑疗效的影响与最近的研究一致,这些研究表明苯并咪唑类药物与葡萄糖结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1a2/6039320/da7c66ab7c2b/fx1.jpg

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