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Red Fluorescent Proteins for Gene Expression and Protein Localization Studies in Streptococcus pneumoniae and Efficient Transformation with DNA Assembled via the Gibson Assembly Method

机译:红色荧光蛋白用于肺炎链球菌的基因表达和蛋白定位研究以及通过吉布森组装法组装的DNA的高效转化

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During the last decades, a wide range of fluorescent proteins (FPs) have been developed and improved. This has had a great impact on the possibilities in biological imaging and the investigation of cellular processes at the single-cell level. Recently, we have benchmarked a set of green fluorescent proteins (GFPs) and generated a codon-optimized superfolder GFP for efficient use in the important human pathogen Streptococcus pneumoniae and other low-GC Gram-positive bacteria. In the present work, we constructed and compared four red fluorescent proteins (RFPs) in S. pneumoniae. Two orange-red variants, mOrange2 and TagRFP, and two far-red FPs, mKate2 and mCherry, were codon optimized and examined by fluorescence microscopy and plate reader assays. Notably, protein fusions of the RFPs to FtsZ were constructed by direct transformation of linear Gibson assembly (isothermal assembly) products, a method that speeds up the strain construction process significantly. Our data show that mCherry is the fastest-maturing RFP in S. pneumoniae and is best suited for studying gene expression, while mKate2 and TagRFP are more stable and are the preferred choices for protein localization studies. The RFPs described here will be useful for cell biology studies that require multicolor labeling in S. pneumoniae and related organisms.
机译:在过去的几十年中,已经开发并改进了多种荧光蛋白(FP)。这对生物成像和单细胞水平细胞过程研究的可能性产生了重大影响。最近,我们已经对一组绿色荧光蛋白(GFP)进行了基准测试,并生成了经过密码子优化的超级文件夹GFP,可有效用于重要的人类病原体肺炎链球菌和其他低GC革兰氏阳性细菌。在目前的工作中,我们构建并比较了肺炎链球菌中的四个红色荧光蛋白(RFP)。对两个橙红色变体mOrange2和TagRFP以及两个远红色FP mKate2和mCherry进行了密码子优化,并通过荧光显微镜和酶标仪进行了检测。值得注意的是,RFP与FtsZ的蛋白质融合是通过线性吉布森装配(等温装配)产品的直接转化而构建的,该方法可显着加快菌株的构建过程。我们的数据显示,mCherry是肺炎链球菌中成熟最快的RFP,最适合用于研究基因表达,而mKate2和TagRFP更稳定,是蛋白质定位研究的首选。此处描述的RFP对于需要在肺炎链球菌和相关生物中进行多色标记的细胞生物学研究非常有用。

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