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Development of fluorescence expression tools to study host-mycoplasma interactions and validation in two distant mycoplasma clades

机译:开发用于研究宿主-支原体相互作用和在两个遥远支原体进化枝中进行验证的荧光表达工具的开发

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摘要

Fluorescence expression tools for stable and innocuous whole mycoplasma cell labelling have been developed. A Tn4001-derivative mini-transposon affording unmarked, stable mutagenesis in mycoplasmas was modified to allow the constitutive, high-level expression of mCherry, mKO2 and mNeonGreen. These tools were used to introduce the respective fluorescent proteins as chromosomal tags in the phylogenetically distant species Mycoplasma mycoides subsp. mycoides and Mycoplasma bovis. The production, selection and characterisation of fluorescent clones were straightforward and resulted in the unprecedented observation of red and green fluorescent mycoplasma colonies in the two species, with no apparent cytotoxicity. Equivalent fluorescence expression levels were quantified by flow cytometry in both species, suggesting that these tools can be broadly applied in mycoplasmas. A macrophage infection assay was performed to assess the usefulness of mNeonGreen-expressing strains for monitoring mycoplasma infections, and notably cell invasion. The presence of fluorescent mycoplasmas inside live phagocytic cells was detected and quantified by flow cytometry and corroborated by confocal microscopy, which allowed the identification of individual mycoplasmas in the cytoplasm of infected cells. The fluorescence expression tools developed in this study are suitable for host-pathogen interaction studies and offer innumerable perspectives for the functional analysis of mycoplasmas both in vitro and in vivo.
机译:已经开发了用于稳定和无害的整个支原体细胞标记的荧光表达工具。修改了Tn4001衍生型微型转座子,可在支原体中提供未标记的,稳定的诱变作用,以允许mCherry,mKO2和mNeonGreen的组成型高水平表达。这些工具被用来在系统发育上较远的物种Mycoplasma mycoides subsp中引入相应的荧光蛋白作为染色体标签。杀菌剂和牛支原体。荧光克隆的生产,选择和表征非常简单,并导致了这两个物种中红色和绿色荧光支原体菌落的空前观察,没有明显的细胞毒性。通过流式细胞术对两个物种中的等效荧光表达水平进行了定量,表明这些工具可广泛应用于支原体。进行巨噬细胞感染测定以评估表达mNeonGreen的菌株在监测支原体感染,特别是细胞侵袭中的有用性。通过流式细胞术检测并定量活吞噬细胞内荧光支原体的存在,并通过共聚焦显微镜检查确证,这可以鉴定感染细胞的细胞质中的个别支原体。这项研究中开发的荧光表达工具适用于宿主-病原体相互作用研究,并为体外和体内支原体的功能分析提供了无数的前景。

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