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Characterization of a Giardia lamblia WB C6 clone resistant to the isoflavone formononetin

机译:对异黄酮甲酰胺蛋白的耐钙羊毛蛋白WB C6克隆的表征

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Giardia lamblia is a common intestinal-dwelling protozoan and causes diarrhoea in humans and animals worldwide. For several years, a small number of drugs such as the 5-nitroimidazole metronidazole (MET) or the thiazolide nitazoxanide (NTZ) have been used for chemotherapy against giardiasis. However, various pre-clinical and clinical investigations revealed that antigiardial chemotherapy may be complicated by emergence of giardial resistance to these drugs. The present study addressed the question if isoflavones with antigiardial activity, such as daidzein (DAI) or formononetin (FOR), may serve as alternative compounds for treatment of giardiasis. For this purpose, the potential of G. lamblia clone WB C6 to form resistance to FOR and related isoflavones was tested in vitro. In the line of these experiments, a clone (C3) resistant to isoflavones, but sensitive to MET and NTZ, was generated. Affinity chromatography on DAI-agarose using cell-free extracts of G. lamblia trophozoites resulted in the isolation of a polypeptide of approximately 40?kDa, which was identified by mass spectrometry as a nucleoside hydrolase (NH) homologue (EAA37551.1). In a nucleoside hydrolase assay, recombinant NH hydrolysed all nucleosides with a preference for purine nucleosides and was inhibited by isoflavones. Using quantitative RT-PCR, the expression of genes that are potentially involved in resistance formation was analysed, namely NH and genes encoding variant surface proteins (VSPs, TSA417). The transcript level of the potential target NH was found to be significantly reduced in C3. Moreover, drastic changes were observed in VSP gene expression. This may indicate that resistance formation in Giardia against isoflavones is linked to, and possibly mediated by, altered gene expression. Taken together, our results suggest FOR or related isoflavones as an alternative antigiardial agent to overcome potential problems of resistance to drugs like MET or NTZ. However, the capacity of Giardia to develop resistance to isoflavones can potentially interfere with this alternative treatment of the disease.
机译:Giardia Lamblia是一种常见的肠道居住原生动物,并导致全世界的人类和动物的腹泻。几年来,少量药物如5-硝基咪唑甲基唑(Met)或噻唑烷诺硝唑(NTZ)已被用于化疗针对贾赤病毒。然而,各种前临床和临床研究表明,通过对这些药物的咯抗性的出现,抗原化疗可能是复杂的。本研究提出了该问题,如果具有抗抗真菌活性的异黄酮,例如Daidzein(Dai)或非ononononetin(for),可以作为治疗贾拉迪亚病的替代化合物。为此目的,在体外测试G.Lamblia克隆WB C6的潜在抗性和相关异黄酮的抵抗力。在这些实验的线路中,产生对异黄酮的克隆(C3),但对满足和NTZ敏感。使用G的无细胞提取物的Dai-琼脂糖中的亲和层析。羊绒滋养体的无细胞提取物导致分离约40μl的多肽,通过质谱法作为核苷水解酶(NH)同源物(EAA37551.1)来鉴定。在核苷水解酶测定中,重组NH用嘌呤核苷的偏好水解所有核苷,并被异黄酮抑制。使用定量RT-PCR,分析了可能参与抗性形成的基因的表达,即编码变体表面蛋白的NH和基因(VSP,TSA417)。发现潜在靶NH的转录物水平在C3中显着降低。此外,在VSP基因表达中观察到激烈的变化。这可能表明,Giardia对异黄酮的抗性形成与改变的基因表达有关并可能介导的。我们的结果表明,表达或相关的异黄酮作为替代抗原剂,以克服患有Met或NTZ等药物的潜在问题。然而,Giardia对异黄酮产生抗性的能力可能会干扰这种疾病的这种替代治疗方法。

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