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A part toolbox to tune genetic expression in Bacillus subtilis

机译:用于调整枯草芽孢杆菌的遗传表达的部件工具箱

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摘要

Libraries of well-characterised components regulating gene expression levels are essential to many synthetic biology applications. While widely available for the Gram-negative model bacterium Escherichia coli, such libraries are lacking for the Gram-positive model Bacillus subtilis, a key organism for basic research and biotechnological applications. Here, we engineered a genetic toolbox comprising libraries of promoters, Ribosome Binding Sites (RBS), and protein degradation tags to precisely tune gene expression in B. subtilis. We first designed a modular Expression Operating Unit (EOU) facilitating parts assembly and modifications and providing a standard genetic context for gene circuits implementation. We then selected native, constitutive promoters of B. subtilis and efficient RBS sequences from which we engineered three promoters and three RBS sequence libraries exhibiting similar to 14 000-fold dynamic range in gene expression levels. We also designed a collection of SsrA proteolysis tags of variable strength. Finally, by using fluorescence fluctuation methods coupled with two-photon microscopy, we quantified the absolute concentration of GFP in a subset of strains from the library. Our complete promoters and RBS sequences library comprising over 135 constructs enables tuning of GFP concentration over five orders of magnitude, from 0.05 to 700 mu M. This toolbox of regulatory components will support many research and engineering applications in B. subtilis.
机译:调节基因表达水平的良好表征组分的文库对于许多合成生物学应用至关重要。虽然广泛可用于革兰氏阴性模型细菌大肠杆菌,但这些文库缺乏革兰氏阳性模型枯草芽孢杆菌,其基础研究和生物技术应用的关键生物体。在这里,我们设计了一种遗传工具箱,其包括促进剂,核糖体结合位点(RB)和蛋白质降解标签的文库,以精确地调节B.枯草芽孢杆菌中的基因表达。我们首先设计了一种模块化表达式操作单元(EOU),促进零件组装和修改,并为基因电路实现提供标准的遗传背景。然后,我们选择了B.枯草芽孢杆菌和有效的RBS序列的本地,由其设计了三种启动子和三个RBS序列文库,其在基因表达水平中表现出类似于14 000倍的动态范围。我们还设计了一种可变强度的SSRA蛋白水解标签的集合。最后,通过使用与双光子显微镜偶联的荧光波动方法,我们量化了来自文库的菌株的子集中的GFP绝对浓度。我们的完整启动子和RBS序列文库,包括超过135个构建体,可以在50点到700亩M上调整GFP浓度超过五个数量级。该工具箱的监管组件将支持B.枯草芽孢杆菌的许多研究和工程应用。

著录项

  • 来源
    《Nucleic Acids Research》 |2016年第15期|共14页
  • 作者单位

    Univ Montpellier CNRS UMR5048 Ctr Biochim Struct INSERM U1054 Montpellier France;

    Univ Paris Saclay Micalis Inst INRA AgroParisTech F-78350 Jouy En Josas France;

    Univ Montpellier CNRS UMR5048 Ctr Biochim Struct INSERM U1054 Montpellier France;

    Univ Montpellier CNRS UMR5048 Ctr Biochim Struct INSERM U1054 Montpellier France;

    Univ Montpellier CNRS UMR5048 Ctr Biochim Struct INSERM U1054 Montpellier France;

    Univ Paris Saclay Micalis Inst INRA AgroParisTech F-78350 Jouy En Josas France;

    Univ Montpellier CNRS UMR5048 Ctr Biochim Struct INSERM U1054 Montpellier France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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