4.7 Article

Tn7-Based Device for Calibrated Heterologous Gene Expression in Pseudomonas putida

期刊

ACS SYNTHETIC BIOLOGY
卷 4, 期 12, 页码 1341-1351

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acssynbio.5b00058

关键词

synthetic biology; Tn7 transposon; synthetic promoters; translational coupler; bicistronic design; Pseudomonas putida

资金

  1. Federal Ministry of Education and Research (BMBF), Germany
  2. European Union [633962]
  3. German Research Foundation through the Emmy Noether project [WI 4255/1-1]
  4. ERA-IB project Pseudomonas 2.0
  5. EC

向作者/读者索取更多资源

The soil bacterium Pseudomonas putida is increasingly attracting considerable interest as a platform for advanced metabolic engineering through synthetic biology approaches. However, genomic context, gene copy number, and transcription/translation interplay often introduce considerable uncertainty to the design of reliable genetic constructs. In this work, we have established a standardized heterologous expression device in which the promoter strength is the only variable; the remaining parameters of the flow have stable default values. To this end, we tailored a mini-Tn7 delivery transposon vector that inserts the constructs in a single genomic locus of P. putida's chromosome. This was then merged with a promoter insertion site, an unvarying translational coupler, and a downstream location for placing the gene(s) of interest under fixed assembly rules. This arrangement was exploited to benchmark a collection of synthetic promoters with low transcriptional noise in this bacterial host. Growth experiments and flow cytometry with singlecopy promoter GFP constructs revealed a robust, constitutive behavior of these promoters, whose strengths and properties could be faithfully compared. This standardized expression device significantly extends the repertoire of tools available for reliable metabolic engineering and other genetic enhancements of P. putida.

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