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Successful Genetic Transfection of the Colonic Protistan Parasite Blastocystis for Reliable Expression of Ectopic Genes

机译:结肠protistan寄生虫囊胚的成功遗传转染的异位基因的可靠表达。

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摘要

The microbial parasite Blastocystis colonizes the large intestines of numerous animal species and increasing evidence has linked Blastocystis infection to enteric diseases with signs and symptoms including abdominal pain, constipation, diarrhea, nausea, vomiting, and flatulence. It has also recently been reported to be an important member of the host intestinal microbiota. Despite significant advances in our understanding of Blastocystis cell biology and host-parasite interactions, a genetic modification tool is absent. In this study, we successfully established a robust gene delivery protocol for Blastocystis subtype 7 (ST7) and ectopic protein expression was further tested using a high sensitivity nano-luciferase (Nluc) reporter system, with promoter regions from several genes. Among them, a strong promoter encompassing a region upstream of the legumain 5′ UTR was identified. Using this promoter combined with the legumain 3′ UTR, which contains a conserved, precise polyadenylation signal, a robust transient transfection technique was established for the first time in Blastocystis. This system was validated by ectopic expression of proteins harbouring specific localization signals. The establishment of a robust, reproducible gene modification system for Blastocystis is a significant advance for Blastocystis research both in vitro and in vivo. This technique will spearhead further research to understand the parasite’s biology, its role in health and disease, along with novel ways to combat the parasite.
机译:微生物寄生性囊藻在许多动物的大肠中定居,越来越多的证据表明,囊藻感染与肠道疾病相关,其症状和体征包括腹痛,便秘,腹泻,恶心,呕吐和肠胃气胀。最近还据报道它是宿主肠道菌群的重要成员。尽管我们在了解囊胚细胞生物学和宿主-寄生虫相互作用方面取得了重大进展,但仍缺乏基因修饰工具。在这项研究中,我们成功地建立了一个强大的基因传递协议,用于Blastocystis亚型7(ST7),并使用高灵敏度的纳米荧光素酶(Nluc)报告系统,与来自多个基因的启动子区域,进一步测试了异位蛋白的表达。其中,鉴定出了强力启动子,其包围了豆科动物5'UTR上游的区域。使用这种启动子与豆荚菌素3'UTR结合在一起,其中包含保守的,精确的聚腺苷酸化信号,首次在囊胚藻中建立了一种强大的瞬时转染技术。通过异位表达具有特定定位信号的蛋白质来验证该系统。建立强大的,可再现的芽孢杆菌基因修饰系统,对于在体外和体内进行芽孢杆菌研究都具有重大意义。该技术将带头进行进一步的研究,以了解寄生虫的生物学,其在健康和疾病中的作用,以及对抗寄生虫的新颖方法。

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