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Increasing the dynamic control space of mammalian transcription devices by combinatorial assembly of homologous regulatory elements from different bacterial species.

Metab Eng.. 2013-01;  15C:144-150
Bacchus W, Weber W, Fussenegger M. ETH Zurich, Department of Biosystems Science and Engineering (D-BSSE), Mattenstrasse 26, CH-4058 Basel, Switzerland.
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Abstract

Prokaryotic transcriptional regulatory elements are widely utilized building blocks for constructing regulatory genetic circuits adapted for mammalian cells and have found their way into a broad range of biotechnological applications. Prokaryotic transcriptional repressors, fused to eukaryotic transactivation or repression domains, compose the transcription factor, which binds and adjusts transcription from chimeric promoters containing the repressor-specific operator sequence. Escherichia coli and Chlamydia trachomatis share common features in the regulatory mechanism of the biosynthesis of l-tryptophan. The repressor protein TrpR of C. trachomatis regulates the trpRBA operon and the TrpR of E. coli regulates ... More

Keywords

Synthetic biology; Chlamydia; Gene regulation; Combinatorial gene expression; l-tryptophan