基于Cre/ loxp的棘阿米巴基因操作系统的建立:靶向基因组编辑与稳定报告基因表达

0 PARASITOLOGY
Parasites, hosts and diseases Pub Date : 2025-02-01 Epub Date: 2025-02-25 DOI:10.3347/PHD.24078
Ja Moon Aung, So-Young Joo, Byoung-Kuk Na, Seunghyeok Bang, Minsang Shin, Youn-Kyoung Goo, Yeonchul Hong
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引用次数: 0

摘要

棘阿米巴是一种机会性病原体负责肉芽肿性阿米巴脑炎和阿米巴角膜炎。尽管具有临床意义,但由于对其致病机制的了解有限,有效的治疗仍然具有挑战性。本研究建立了棘阿米巴基因操作系统,以促进基因功能和药物筛选研究。我们利用Cre/loxP系统,通过同源重组将编码tdTomato荧光蛋白的基因整合到castellanii棘阿米巴基因组中。对多泛素基因及其非翻译区进行了鉴定和验证,在多泛素基因的非翻译区之间克隆了tdTomato基因。然后使用含有loxP位点的改良的pLPBLP载体将该结构引入棘阿米巴基因组。利用Cre重组酶去除loxP位点两侧的新霉素耐药盒,并通过克隆稀释选择转基因细胞。通过PCR和荧光显微镜证实,tdTomato基因的整合在滋养体和囊体中均稳定表达,无需选择抗生素。我们证明了在棘阿米巴中无抗生素报告基因表达的可行性。该系统为功能基因组学提供了有价值的工具,使我们能够探索棘阿米巴原虫的基因功能,并建立可靠的药物筛选模型。此外,无需连续使用选择标记就能表达基因的能力为研究该病原体的病理生物学和推进针对棘阿米巴感染的新治疗策略的开发开辟了新的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Establishing a Cre/loxP-based genetic manipulation system for Acanthamoeba: Targeted genome editing and stable reporter expression.

Acanthamoeba is an opportunistic pathogen responsible for granulomatous amoebic encephalitis and amoebic keratitis. Despite its clinical significance, effective treatments remain challenging due to a limited understanding of its pathogenic mechanism. This study developed a genetic manipulation system in Acanthamoeba to facilitate gene function and drug screening studies. We applied the Cre/loxP system to integrate the gene encoding the tdTomato fluorescent protein into the genome of Acanthamoeba castellanii via homologous recombination. The polyubiquitin gene and its untranslated regions were identified and verified, after which the tdTomato gene was cloned between the untranslated regions of the polyubiquitin gene. The construct was then introduced into the Acanthamoeba genome using a modified pLPBLP vector containing loxP sites. Cre recombinase was utilized to remove the neomycin resistance cassette flanked by loxP sites, and genetically modified cells were selected by clonal dilution. The integration of the tdTomato gene, confirmed through PCR and fluorescence microscopy, showed stable expression in both trophozoites and cysts without the need for antibiotic selection. We demonstrated the feasibility of antibiotic-free reporter gene expression in Acanthamoeba. The system provides a valuable tool for functional genomics, allowing us to explore gene functions in Acanthamoeba and develop reliable drug screening models. Furthermore, the ability to express genes without the continuous use of selection markers opens up new possibilities for studying the pathobiology of this pathogen and advancing the development of novel therapeutic strategies against Acanthamoeba infections.

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CiteScore
2.70
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