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Expression of Fluorescent Proteins in Bifidobacteria for Analysis of Host-Microbe Interactions

机译:分析双歧杆菌中荧光蛋白的表达,以分析宿主与微生物的相互作用

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Bifidobacteria are an important component of the human gastrointestinal microbiota and are frequently used as probiotics. The genetic inaccessibility and lack of molecular tools commonly used in other bacteria have hampered a detailed analysis of the genetic determinants of bifidobacteria involved in their adaptation to, colonization of, and interaction with the host. In the present study, a range of molecular tools were developed that will allow the closing of some of the gaps in functional analysis of bifidobacteria. A number of promoters were tested for transcriptional activity in Bifidobacterium bifidum S17 using pMDY23, a previously published promoter probe vector. The promoter of the gap gene (Pgap) of B. bifidum S17 yielded the highest promoter activity among the promoters tested. Thus, this promoter and the pMDY23 backbone were used to construct a range of vectors for expression of different fluorescent proteins (FPs). Successful expression of cyan fluorescent protein (CFP), green fluorescent protein (GFP), yellow fluorescent protein (YFP), and mCherry could be shown for three strains representing three different Bifidobacterium spp. The red fluorescent B. bifidum S17/pVG-mCherry was further used to demonstrate application of fluorescent bifidobacteria for adhesion assays and detection in primary human macrophages cultured in vitro. Furthermore, pMGC-mCherry was cloned by combining a chloramphenicol resistance marker and expression of the FP mCherry under the control of Pgap. The chloramphenicol resistance marker of pMGC-mCherry was successfully used to determine gastrointestinal transit time of B. bifidum S17. Moreover, B. bifidum S17/pMGC-mCherry could be detected in fecal samples of mice after oral administration.
机译:双歧杆菌是人类胃肠菌群的重要组成部分,经常被用作益生菌。遗传上的不可及性以及其他细菌中常用的分子工具的缺乏已经阻碍了对双歧杆菌的遗传决定因素的详细分析,而这些决定因素涉及它们对宿主的适应,定植和与宿主的相互作用。在本研究中,开发了一系列分子工具,这些工具将允许弥合双歧杆菌功能分析中的某些空白。使用先前公布的启动子探针载体pMDY23,在双歧杆菌S17中测试了许多启动子的转录活性。双歧双歧杆菌S17的 gap 基因(P gap )的启动子在测试的启动子中产生最高的启动子活性。因此,该启动子和pMDY23主链用于构建一系列表达不同荧光蛋白(FPs)的载体。对于代表三种不同双歧杆菌属的三种菌株,可以显示出青色荧光蛋白(CFP),绿色荧光蛋白(GFP),黄色荧光蛋白(YFP)和mCherry的成功表达。红色双歧双歧杆菌S17 / pVG-mCherry进一步用于证明荧光双歧杆菌在体外培养的原代人巨噬细胞的粘附测定和检测中的应用。此外,在P gap 的控制下,通过结合氯霉素抗性标记和FP mCherry的表达来克隆pMGC-mCherry。 pMGC-mCherry的氯霉素抗性标记已成功用于确定双歧双歧杆菌S17的胃肠道通过时间。此外,口服给药后的小鼠粪便样品中可检测到双歧双歧杆菌S17 / pMGC-mCherry。

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