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首页> 外文期刊>Experimental parasitology >Neospora caninum: Functional inhibition of protein disulfide isomerase by the broad-spectrum anti-parasitic drug nitazoxanide and other thiazolides
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Neospora caninum: Functional inhibition of protein disulfide isomerase by the broad-spectrum anti-parasitic drug nitazoxanide and other thiazolides

机译:犬新孢子虫:广谱抗寄生虫药硝唑尼特和其他噻唑类内酯对蛋白质二硫键异构酶的功能抑制

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Nitazoxanide (NTZ) and several NTZ-derivatives (thiazolides) have been shown to exhibit considerable anti-Neospora caninum tachyzoite activity in vitro. We coupled tizoxanide (TIZ), the deacetylated metabolite, to epoxy-agarose-resin and performed affinity chromatography with N. caninum tachyzoite extracts. Two main protein bands of 52 and 43 kDa were isolated. The 52 kDa protein was readily recognized by antibodies directed against NcPDI, and mass spectrometry confirmed its identity. Poly-histidine-tagged NcPDI-cDNA was expressed in Escherichia coli and recombinant NcPDI (recNcPDI) was purified by Co2+-affinity chromatography. By applying an enzyme assay based on the measurement of insulin crosslinking activity, recNcPDI exhibited properties reminiscent for PDIs, and its activity was impaired upon the addition of classical PDI inhibitors such as bacitracin (1-2 mM), para-chloromercuribenzoic acid (0.1-1 mM) and tocinoic acid (0.1-1 mM). RecNcPDI-mediated insulin crosslinking was inhibited by NTZ (5-100 oM) in a dose-dependent manner. In addition, the enzymatic activity of recNcPDI was inhibited by those thiazolides that also affected parasite proliferation. Thus, thiazolides readily interfere with NcPDI, and possibly also with PDIs from other microorganisms susceptible to thiazolides.
机译:硝唑尼特(NTZ)和几种NTZ衍生物(噻唑化物)已显示出在体外具有可观的抗新孢子虫速殖子活性。我们将脱乙酰基代谢产物tizoxanide(TIZ)与环氧琼脂糖树脂偶联,并用犬新孢子虫速殖子提取物进行了亲和层析。分离出两个主要的蛋白带,分别为52和43 kDa。 52 kDa的蛋白质很容易被针对NcPDI的抗体识别,质谱证实了它的身份。在大肠杆菌中表达了带有多组氨酸标签的NcPDI-cDNA,并通过Co2 +亲和层析纯化了重组NcPDI(recNcPDI)。通过应用基于胰岛素交联活性测量的酶分析,recNcPDI表现出让人想起PDI的特性,并且在添加经典PDI抑制剂(例如杆菌肽(1-2 mM),对氯汞苯甲酸(0.1- 1 mM)和托甲酸(0.1-1 mM)。 RecNcPDI介导的胰岛素交联被NTZ(5-100 oM)抑制,呈剂量依赖性。此外,recNcPDI的酶活性被那些也影响寄生虫增殖的噻唑类内酯所抑制。因此,噻唑化物容易干扰NcPDI,并且可能也干扰来自其他对噻唑化物敏感的微生物的PDI。

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