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Stage-Regulated GFP Expression in Trypanosoma cruzi: Applications from Host-Parasite Interactions to Drug Screening

机译:克鲁氏锥虫的阶段调节的GFP表达:从宿主-寄生虫相互作用到药物筛选的应用。

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摘要

Trypanosoma cruzi is the etiological agent of Chagas disease, an illness that affects about 10 million people, mostly in South America, for which there is no effective treatment or vaccine. In this context, transgenic parasites expressing reporter genes are interesting tools for investigating parasite biology and host-parasite interactions, with a view to developing new strategies for disease prevention and treatment. We describe here the construction of a stably transfected fluorescent T. cruzi clone in which the GFP gene is integrated into the chromosome carrying the ribosomal cistron in T. cruzi Dm28c. This fluorescent T. cruzi produces detectable amounts of GFP only at replicative stages (epimastigote and amastigote), consistent with the larger amounts of GFP mRNA detected in these forms than in the non replicative trypomastigote stages. The fluorescence signal was also strongly correlated with the total number of parasites in T. cruzi cultures, providing a simple and rapid means of determining the growth inhibitory dose of anti-T.cruzi drugs in epimastigotes, by fluorometric microplate screening, and in amastigotes, by the flow cytometric quantification of T. cruzi-infected Vero cells. This fluorescent T. cruzi clone is, thus, an interesting tool for unbiased detection of the proliferating stages of the parasite, with multiple applications in the genetic analysis of T. cruzi, including analyses of host-parasite interactions, gene expression regulation and drug development.
机译:克鲁格氏锥虫是恰加斯病的病原体,该病影响约1000万人,主要在南美,没有有效的治疗方法或疫苗。在这种情况下,表达报告基因的转基因寄生虫是研究寄生虫生物学和宿主-寄生虫相互作用的有趣工具,目的是开发新的疾病预防和治疗策略。我们在这里描述了一个稳定转染的荧光克鲁维酵母克隆的构建,其中GFP基因整合到了克鲁维酵母Dm28c中携带核糖体顺反子的染色体中。这种荧光克氏锥虫仅在复制阶段(表鞭毛和鞭毛)产生可检测量的GFP,这与在非复制性锥鞭草阶段相比,以这些形式检测到的GFP mRNA量更大。荧光信号还与克鲁维氏锥虫培养物中的寄生虫总数紧密相关,从而提供了一种简便快捷的方法,可通过荧光微孔板筛选和变形虫测定抗前鞭毛虫中anti曲霉药物的生长抑制剂量。通过流式细胞术定量克鲁维酵母感染的Vero细胞。因此,这种荧光克鲁维氏锥虫克隆是一种用于公正检测寄生虫增殖阶段的有趣工具,它在克鲁维氏锥虫的遗传分析中具有多种应用,包括宿主-寄生虫相互作用,基因表达调控和药物开发的分析。 。

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