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首页> 外文期刊>Molecular and Biochemical Parasitology >Structural analysis and anthelmintic of Canavalia brasiliensis lectin reveal molecular correlation between the carbohydrate recongnition domain and glycans of Haemonchus contortus
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Structural analysis and anthelmintic of Canavalia brasiliensis lectin reveal molecular correlation between the carbohydrate recongnition domain and glycans of Haemonchus contortus

机译:Canavalia Brasiliensis凝集素的结构分析和Anthelmintic揭示了Haemonchus incortus的碳水化合物识别结构域和聚糖之间的分子相关性

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摘要

Haemonchus contortus is one of the most economically important parasites infecting small ruminants worldwide. This nematode has shown a great ability to develop resistance to anthelmintic drugs, calling for the development of alternative control approaches. Because lectins recognize and bind to specific carbohydrates and glycan structures present in parasites, they can be considered as an alternative to develop new antiparasitic drugs. Accordingly, this work aimed to investigate the anthelmintic effect of Canavalia brasiliensis (ConBr) lectin against H. contortus and to evaluate a possible interaction of ConBr with glycans of this parasite by molecular docking. ConBr showed significant inhibition of H. contortus larval development with an IC50 of 0.26 mg mL(-1). Molecular docking assays revealed that glycans containing the core trimannoside [Man(alpha 1-3)Man(alpha 1-6)Man] of H. contortus interact in the carbohydrate recognition domain of ConBr with an interaction value of MDS = -248.77. Our findings suggest that the inhibition of H. contortus larval development is directly related to the recognition of the core trimannoside present in the glycans of these parasites. This work is the first to report on the structure-function relationships of the anthelmintic activity of plant lectins.
机译:Haemonchus Contortus是最受感染全球小型反刍动物的最重要的寄生虫之一。该线虫表现出具有抗韧性药物的抗性的能力,呼吁开发替代控制方法。因为凝集素识别和结合寄生虫中存在的特定碳水化合物和甘油结构,它们可以被认为是开发新的抗遗传性药物的替代方案。因此,这种作品旨在探讨CanavaliaBrasiliensis(CONBR)凝集素对H.曲素的胰岛素效果,并通过分子对接评估康涅尔菌与该寄生虫的聚糖的可能相互作用。 CONBR表明,H. incortus Larval发育的显着抑制作用0.26mg ml(-1)。分子对接测定揭示了含有核苷酸的糖粉[人(α1-3)人(α1-6)人]的H. incortus在核酸核水合物识别结构域中的MDS = -248.77的相互作用值相互作用。我们的研究结果表明,H. incortorus幼虫发育的抑制与这些寄生虫聚糖中存在的核苷酸核苷酸的识别直接相关。这项工作是第一个报告植物凝集素的扁平症活动的结构功能关系。

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