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荧光标记的 DNA 与感受态和重组蛋白相互作用,并在枯草芽孢杆菌的自然转化后整合和表达。

Fluorescently Labeled DNA Interacts with Competence and Recombination Proteins and Is Integrated and Expressed Following Natural Transformation of Bacillus subtilis.

机构信息

Department of Molecular Genetics, Faculty of Science and Engineering, Groningen Biomolecular Sciences and Biotechnology Institute (GBB), University of Groningen, Groningen, the Netherlands.

Department of Molecular Genetics, Faculty of Science and Engineering, Groningen Biomolecular Sciences and Biotechnology Institute (GBB), University of Groningen, Groningen, the Netherlands

出版信息

mBio. 2018 Sep 25;9(5):e01161-18. doi: 10.1128/mBio.01161-18.

Abstract

During competence, is able to take up DNA from its environment through the process of transformation. We investigated the ability of to take up fluorescently labeled DNA and found that it is able to take up fluorescein-dUTP-, DyLight 550-dUTP-, and DyLight 650-dUTP-labeled DNA. Transformation with labeled DNA containing an antibiotic cassette resulted in uptake of the labeled DNA and also generated antibiotic-resistant colonies. DNA is primarily taken up at the pole, as it can be seen to colocalize with ComFC, which is a component of the competence machinery. The DNA is taken up rapidly and can be seen to localize with (the actively searching form of) RecA. Colocalization with a homologous locus on the chromosome increases over time. Using microfluidics, we observed replacement of the homologous locus and subsequent expression of the integrated labeled and unlabeled DNA, although whether the integrated DNA contains labeled nucleotides needs to be determined conclusively. Integrated DNA in cells with a doubling time of 60 min is expressed on average 6 h 45 min after the addition of DNA and 4 h 45 min after the addition of fresh medium. We also found that the expression of the incoming DNA under these conditions can occur before cell division and, thus, before complete exit from the competence state. Because the competence machinery is conserved among naturally competent bacteria, this method of labeling is also suitable for studying transformation of other naturally competent bacteria. We used DNA that was covalently labeled with fluorescent nucleotides to investigate the transformation process of at the molecular level. We show that the labeled DNA colocalizes with components of the competence machinery, the chromosome, and the recombination protein RecA. Using time-lapse microscopy and microfluidics, we visualized, in real-time, the uptake of fluorescently labeled DNA. We found that under these conditions, cell division is not required for the expression of integrated DNA. Because the competence machinery is conserved in naturally competent bacteria, this method can also be used to investigate the transformation process in many other bacterial species.

摘要

在感受态期间,能够通过转化过程从环境中摄取 DNA。我们研究了 摄取荧光标记 DNA 的能力,发现它能够摄取荧光素-dUTP、DyLight 550-dUTP 和 DyLight 650-dUTP 标记的 DNA。用含有抗生素盒的标记 DNA 进行转化导致标记 DNA 的摄取,并产生抗生素抗性菌落。DNA 主要在极处摄取,因为可以看到它与 ComFC 共定位,ComFC 是感受态机制的一个组成部分。DNA 摄取迅速,可以看到与(主动搜索形式的)RecA 共定位。随着时间的推移,与染色体上同源基因座的共定位增加。使用微流控技术,我们观察到同源基因座的替换和随后整合的标记和未标记 DNA 的表达,尽管需要确定整合的 DNA 是否含有标记核苷酸。在倍增时间为 60 分钟的细胞中,整合的 DNA 在添加 DNA 后平均 6 小时 45 分钟表达,并在添加新鲜培养基后 4 小时 45 分钟表达。我们还发现,在这些条件下,进入的 DNA 的表达可以在细胞分裂之前发生,因此在完全退出感受态状态之前发生。由于感受态机制在自然感受态细菌中是保守的,因此这种标记方法也适用于研究其他自然感受态细菌的转化。我们使用共价标记有荧光核苷酸的 DNA 来研究 在分子水平上的转化过程。我们表明,标记的 DNA 与感受态机制的成分、染色体和重组蛋白 RecA 共定位。使用延时显微镜和微流控技术,我们实时可视化了荧光标记 DNA 的摄取。我们发现,在这些条件下,细胞分裂不是整合 DNA 表达所必需的。由于感受态机制在自然感受态细菌中是保守的,因此这种方法也可用于研究许多其他细菌物种的转化过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96fb/6156202/7796f07463bb/mbo0041840570001.jpg

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