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首页> 外文期刊>Infection and immunity >A Multifunctional, Synthetic Gaussia princeps Luciferase Reporter for Live Imaging of Candida albicans Infections
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A Multifunctional, Synthetic Gaussia princeps Luciferase Reporter for Live Imaging of Candida albicans Infections

机译:多功能合成高斯普林塞普荧光素酶记者的白色念珠菌感染的实时成像。

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Real-time monitoring of the spatial and temporal progression of infection/gene expression in animals will contribute greatly to our understanding of host-pathogen interactions while reducing the number of animals required to generate statistically significant data sets. Sensitive in vivo imaging technologies can detect low levels of light emitted from luciferase reporters in vivo, but the existing reporters are not optimal for fungal infections. Therefore, our aim was to develop a novel reporter system for imaging Candida albicans infections that overcomes the limitations of current luciferase reporters for this major fungal pathogen. This luciferase reporter was constructed by fusing a synthetic, codon-optimized version of the Gaussia princeps luciferase gene to C. albicans PGA59, which encodes a glycosylphosphatidylinositol-linked cell wall protein. Luciferase expressed from this PGA59-gLUC fusion (referred to as gLUC59) was localized at the C. albicans cell surface, allowing the detection of luciferase in intact cells. The analysis of fusions to strong (ACT1 and EFT3), oxidative stress-induced (TRX1, TRR1, and IPF9996), and morphogenesis-dependent (HWP1) promoters confirmed that gLUC59 is a convenient and sensitive reporter for studies of gene regulation in yeast or hyphal cells, as well as a flexible screening tool. Moreover, the ACT1-gLUC59 fusion represented a powerful tool for the imaging of disease progression in superficial and subcutaneous C. albicans infections. gLUC59 and related cell surface-exposed luciferase reporters might find wide applications in molecular biology, cell biology, pathobiology, and high-throughput screens.
机译:实时监测动物中感染/基因表达的空间和时间进展将大大有助于我们对宿主-病原体相互作用的了解,同时减少了产生统计学上重要的数据集所需的动物数量。敏感的体内成像技术可以检测到萤光素酶报道分子在体内的低水平发光,但是现有的报道分子对于真菌感染并不是最佳的。因此,我们的目的是开发一种新型的报道白念珠菌感染的报告系统,该系统克服了目前萤光素酶报告基因对这种主要真菌病原体的局限性。通过将合成的,经密码子优化的 Gaussia princeps 荧光素酶基因与 C融合,构建了这种荧光素酶报道基因。 albicans PGA59 ,它编码糖基磷脂酰肌醇连接的细胞壁蛋白。从 PGA59-gLUC 融合体表达的萤光素酶(称为 gLUC59 )位于 C。白细胞的表面,可以检测完整细胞中的萤光素酶。与强( ACT1 EFT3 ),氧化应激诱导的( TRX1 TRR1 IPF9996 )和依赖于形态发生的( HWP1 )启动子证实, gLUC59 是研究酵母或菌丝的基因调控研究的便捷且敏感的报告基因细胞,以及灵活的筛选工具。此外, ACT1 - gLUC59 融合蛋白是浅表和皮下 C疾病进展成像的有力工具。白色念珠菌感染。 gLUC59 和相关的细胞表面荧光素酶报道基因可能在分子生物学,细胞生物学,病理生物学和高通量筛选中有广泛的应用。

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