Bartels Julia, López Castellanos Sebastián, Radeck Jara, Mascher Thorsten
Institute of Microbiology, Technische Universität (TU) Dresden , 01062 Dresden, Germany.
ACS Synth Biol. 2018 Feb 16;7(2):452-461. doi: 10.1021/acssynbio.7b00285. Epub 2018 Jan 19.
Upon starvation, the soil bacterium Bacillus subtilis forms an intracellular, metabolically inactive endospore. Its core contains the DNA, encased by three protein layers protecting it against a multitude of environmental threats. The outermost layer, the crust, harbors great potential as a protein-displaying platform: a gene of interest can be translationally fused to a crust protein gene, resulting in endospores displaying the desired protein on their surface. To unlock this potential in a standardized fashion, we designed a suite of 12 vectors (Sporovectors), based on the BioBrick cloning standard. With these vectors, proteins can easily be fused N- or C-terminally to the six crust proteins CotV, CotW, CotX, CotY, CotZ, and CgeA under the control of the strongest crust gene promoter P. All Sporovectors were evaluated with GFP and two different laccases. On the basis of our data, CotY and CotZ represent the best anchor proteins. But there are significant differences in activity and functional stability between the two tested laccases. Our vector suite is a powerful tool to generate and evaluate a vast variety of functionalized endospores. It allows quickly identifying the best anchor and fusion site for the protein of interest. Our findings demonstrate that the crust of B. subtilis endospores is an inexpensive and easy platform for displaying different proteins of interest.
在饥饿状态下,土壤细菌枯草芽孢杆菌会形成一种细胞内的、代谢不活跃的芽孢。其核心包含DNA,由三层蛋白质包裹,保护它免受多种环境威胁。最外层的外壳作为一个蛋白质展示平台具有巨大潜力:感兴趣的基因可以与外壳蛋白基因进行翻译融合,从而使芽孢在其表面展示出所需的蛋白质。为了以标准化的方式释放这种潜力,我们基于BioBrick克隆标准设计了一套12种载体(芽孢载体)。利用这些载体,蛋白质可以在最强的外壳基因启动子P的控制下,轻松地在N端或C端与六种外壳蛋白CotV、CotW、CotX、CotY、CotZ和CgeA融合。所有芽孢载体都用绿色荧光蛋白(GFP)和两种不同的漆酶进行了评估。根据我们的数据,CotY和CotZ是最佳的锚定蛋白。但两种测试漆酶在活性和功能稳定性方面存在显著差异。我们的载体套件是生成和评估各种功能化芽孢的强大工具。它可以快速确定感兴趣蛋白质的最佳锚定和融合位点。我们的研究结果表明,枯草芽孢杆菌芽孢的外壳是展示不同感兴趣蛋白质的廉价且简便的平台。