Related Experiment Video
Updated: Jan 2, 2026

Quantitative Comparison of cis-Regulatory Element CRE Activities in Transgenic Drosophila melanogaster
Published on: December 19, 2011
Multiple-Site Diversification of Regulatory Sequences Enables Interspecies Operability of Genetic Devices
Angeles Hueso-Gil1, Ákos Nyerges2, Csaba Pál2
1Systems Biology Program , Centro Nacional de Biotecnología , Campus de Cantoblanco , 28049 Madrid , Spain.
Abstract:
The features of the light-responsive cyanobacterial CcaSR regulatory module that determine interoperability of this optogenetic device between Escherichia coli and Pseudomonas putida have been examined. For this, all structural parts (i.e., ho1 and pcyA genes for synthesis of phycocyanobilin, the ccaS/ccaR system from Synechocystis, and its cognate downstream promoter) were maintained but their expression levels and stoichiometry diversified by (i) reassembling them together in a single broad host range, standardized vector and (ii) subjecting the noncoding regulatory sequences to multiple cycles of directed evolution with random genomic mutations (DIvERGE), a recombineering method that intensifies mutation rates within discrete DNA segments. Once passed to P. putida, various clones displayed a wide dynamic range, insignificant leakiness, and excellent capacity in response to green light. Inspection of the evolutionary intermediates pinpointed translational control as the main bottleneck for interoperability and suggested a general approach for easing the exchange of genetic cargoes between different species, i.e., optimization of relative expression levels and upturning of subcomplex stoichiometry.
Related Concept Videos
Conservative Site-specific Recombination and Phase Variation
The recognition sites for Cre recombinase called LoxP...
Cis-regulatory Sequences
Cis-regulatory Sequences
Types of Genetic Transfer Between Organisms
Types of Genetic Transfer Between Organisms
Cooperative Binding of Transcription Regulators

