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首页> 外文期刊>Applied and Environmental Microbiology >Use of mCherry Red Fluorescent Protein for Studies of Protein Localization and Gene Expression in Clostridium difficile
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Use of mCherry Red Fluorescent Protein for Studies of Protein Localization and Gene Expression in Clostridium difficile

机译:mCherry红色荧光蛋白在艰难梭菌中蛋白质定位和基因表达研究中的应用

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Fluorescent proteins are powerful reporters in biology, but most require O2 for chromophore maturation, making them inherently difficult to use in anaerobic bacteria. Clostridium difficile, a strict anaerobe with a genomic GC content of only 29%, is the leading cause of hospital-acquired diarrhea in developed countries, and new methods for studying this pathogen are sorely needed. We recently demonstrated that a cyan fluorescent protein called CFPopt that has been codon optimized for production in low-GC bacteria can be used to study protein localization in C. difficile provided the cells are fixed prior to exposure to air. We describe here a codon-optimized variant of mCherry (mCherryOpt) that exhibits faster acquisition of fluorescence and a better signal-to-noise ratio than CFPopt. We utilized mCherryOpt to construct plasmids for studying protein localization (pRAN473) and gene expression (pDSW1728) in C. difficile. Plasmid pRAN473 is an mCherryOpt fusion vector with a tetracycline-inducible promoter. To document its biological utility, we demonstrated septal localization of two cell division proteins, MldA and ZapA. Plasmid pDSW1728 is designed for cloning a promoter of interest upstream of mCherryOpt. As proof of principle, we studied the expression of the pdaV operon, which is required for lysozyme resistance. In confirmation and extension of previous reports, we found that expression of the pdaV operon requires the alternative sigma factor σv and that induction by lysozyme is dose dependent and uniform across the population of lysozyme-treated cells.
机译:荧光蛋白在生物学上是有力的报道者,但大多数需要O 2 来使发色团成熟,这使其固有地难以在厌氧细菌中使用。艰难梭菌是一种严格的厌氧菌,其基因组GC含量仅为29%,是发达国家医院获得性腹泻的主要原因,因此迫切需要研究这种病原体的新方法。我们最近证明,已针对在低GC细菌中生产进行了密码子优化的青色荧光蛋白CFP opt 可用于研究艰难梭菌的蛋白质定位,前提是该细胞在暴露于强直链杆菌之前是固定的空气。我们在这里描述了mCherry(mCherryOpt)的密码子优化变体,与CFP opt 相比,该变体表现出更快的荧光获取和更好的信噪比。我们利用 mCherryOpt 构建了用于研究艰难梭菌蛋白质定位(pRAN473)和基因表达(pDSW1728)的质粒。质粒pRAN473是具有四环素诱导型启动子的 mCherryOpt 融合载体。为了证明其生物学用途,我们展示了两种细胞分裂蛋白MldA和ZapA的间隔定位。质粒pDSW1728设计用于克隆 mCherryOpt 上游的目标启动子。作为原理证明,我们研究了溶菌酶抗性所必需的 pdaV 操纵子的表达。在确认和扩展以前的报道中,我们发现 pdaV 操纵子的表达需要替代的sigma因子σ v ,溶菌酶的诱导在整个人群中呈剂量依赖性和均一性经溶菌酶处理的细胞。

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