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肝片形吸虫β-微管蛋白 2 型结合阿苯达唑,因此可能是该药物的靶点。

Liver fluke β-tubulin isotype 2 binds albendazole and is thus a probable target of this drug.

机构信息

School of Biological Sciences, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast BT9 7BL, UK.

出版信息

Parasitol Res. 2010 Oct;107(5):1257-64. doi: 10.1007/s00436-010-1997-5. Epub 2010 Jul 31.

Abstract

Albendazole is a benzimidazole drug which can be used to treat liver fluke (Fasciola hepatica) infections. Its mode of action is believed to be the inhibition of microtubule formation through binding to β-tubulin. However, F. hepatica expresses at least six different isotypes of β-tubulin, and this has confused, rather than clarified, understanding of the molecular mechanisms of benzimidazole drugs in this organism. Recombinant F. hepatica β-tubulin proteins were expressed in, and purified from, Escherichia coli. These proteins were then used in pull-down assays in which albendazole was covalently linked to Sepharose. β-Tubulin isotype 2 was pulled down in this assay, and this interaction could be reduced by adding competing albendazole. Molecular modelling of β-tubulin isotypes suggests that changes in the side change conformations of residue 200 in the putative albendazole binding site may be important in determining whether, or not, a particular isotype will bind to the drug. These results, together with previous work demonstrating that albendazole causes disruption of microtubules in the liver fluke, strongly suggest that β-tubulin isotype 2 is one of the targets of this drug.

摘要

阿苯达唑是一种苯并咪唑类药物,可用于治疗肝片吸虫(Fasciola hepatica)感染。其作用机制被认为是通过与β-微管蛋白结合来抑制微管的形成。然而,肝片吸虫至少表达六种不同的β-微管蛋白同工型,这使得人们对苯并咪唑类药物在该生物体内的分子机制的理解更加混乱,而不是更加清晰。重组的肝片形吸虫β-微管蛋白蛋白在大肠杆菌中表达并纯化。然后,在亲和层析实验中,将阿苯达唑共价连接到琼脂糖上。在该实验中,β-微管蛋白同工型 2被拉下,并且可以通过添加竞争的阿苯达唑来减少这种相互作用。β-微管蛋白同工型的分子建模表明,在假定的阿苯达唑结合位点中残基 200 的侧链构象的变化可能对确定特定同工型是否与药物结合非常重要。这些结果,以及先前证明阿苯达唑导致肝片形吸虫微管破坏的工作,强烈表明β-微管蛋白同工型 2是该药物的靶标之一。

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