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Updated: Mar 30, 2026

In vivo Application of the REMOTE-control System for the Manipulation of Endogenous Gene Expression
Published on: March 29, 2019
Dual-promoter control of gene expression: from transcriptional fine-tuning to antibiotic resistance
Petra Sudzinová1, Tamara Knežová Balgová1, Šárka Bobková1
1Laboratory of Microbial Genetics and Gene Expression, Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, Prague 142 20, Czech Republic.
Abstract:
The first and arguably most critical level of gene expression is transcription of the genetic information from DNA into RNA. Within this process, transcription initiation stands out as the key step that influences all downstream events. Central to initiation are promoters, DNA sequences that interact with the key enzyme of transcription, RNA polymerase. A single transcription unit may be controlled by one or multiple promoters, a strategy found across all domains of life. This review highlights how combinatorial promoter arrangements control gene expression in microorganisms, with brief comparisons to other organisms. We also explore how these promoter architectures function as sensors for stress-related molecules, such as antibiotics. We examine how these insights can be applied to predict previously unidentified mechanisms of antibiotic resistance. Finally, the use of dual-promoters in synthetic biology is outlined and discussed.
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