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The <Emphasis Type="Italic">Bacillus</Emphasis> BioBrick Box: generation and evaluation of essential genetic building blocks for standardized work with <Emphasis Type="Italic">Bacillus subtilis</Emphasis>
Authors:Jara?Radeck  Korinna?Kraft  Julia?Bartels  Tamara?Cikovic  Franziska?Dürr  Jennifer?Emenegger  Simon?Kelterborn  Christopher?Sauer  Georg?Fritz  Susanne?Gebhard  Email author" target="_blank">Thorsten?MascherEmail author
Institution:1.Department Biology I, AG Synthetic Microbiology,Ludwig-Maximilians-Universit?t München,Planegg-Martinsried,Germany;2.Ludwig-Maximilians-University Munich,Arnold Sommerfeld Center for Theoretical Physics,München,Germany;3.Present affiliation: Institute of Cell and Molecular Biosciences,Newcastle University,UK
Abstract:

Background

Standardized and well-characterized genetic building blocks are a prerequisite for the convenient and reproducible assembly of novel genetic modules and devices. While numerous standardized parts exist for Escherichia coli, such tools are still missing for the Gram-positive model organism Bacillus subtilis. The goal of this study was to develop and thoroughly evaluate such a genetic toolbox.

Results

We developed five BioBrick-compatible integrative B. subtilis vectors by deleting unnecessary parts and removing forbidden restriction sites to allow cloning in BioBrick (RFC10) standard. Three empty backbone vectors with compatible resistance markers and integration sites were generated, allowing the stable chromosomal integration and combination of up to three different devices in one strain. In addition, two integrative reporter vectors, based on the lacZ and luxABCDE cassettes, were BioBrick-adjusted, to enable β-galactosidase and luciferase reporter assays, respectively. Four constitutive and two inducible promoters were thoroughly characterized by quantitative, time-resolved measurements. Together, these promoters cover a range of more than three orders of magnitude in promoter strength, thereby allowing a fine-tuned adjustment of cellular protein amounts. Finally, the Bacillus BioBrick Box also provides five widely used epitope tags (FLAG, His10, cMyc, HA, StrepII), which can be translationally fused N- or C-terminally to any protein of choice.

Conclusion

Our genetic toolbox contains three compatible empty integration vectors, two reporter vectors and a set of six promoters, two of them inducible. Furthermore, five different epitope tags offer convenient protein handling and detection. All parts adhere to the BioBrick standard and hence enable standardized work with B. subtilis. We believe that our well-documented and carefully evaluated Bacillus BioBrick Box represents a very useful genetic tool kit, not only for the iGEM competition but any other BioBrick-based project in B. subtilis.
Keywords:
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