The robust and precise on and off switching of one or more genes of interest, followed by expression or repression is essential for many biological circuits as well as for industrial applications. However, many regulated systems published to date influence the viability of the host cell, show high basal expression or enable only the overexpression of the target gene without the possibility of fine regulation. Herein, we describe an AND gate designed to overcome these limitations by combining the advantages of three well established systems, namely the scaffold RNA CRISPR/dCas9 platform that is controlled by Gal10 as a natural and by LexA-ER-AD as heterologous transcription factor. We hence developed a predictable and modular, ...
Large synthetic genetic circuits require the simultaneous expression of many regulators. Deactivated...
Robust control over gene expression is necessary for diverse applications in molecular biology, synt...
Introduction: Both CRISPR/dCas9 and CRISPR/dCpf1 genome editing systems have shown exciting promises...
The robust and precise on and off switching of one or more genes of interest, followed by expressio...
The robust and precise on and off switching of one or more genes of interest, followed by expressio...
The robust and precise on and off switching of one or more genes of interest, followed by expressio...
The robust and precise on and off switching of one or more genes of interest, followed by expressio...
The robust and precise on and off switching of one or more genes of interest, followed by expression...
Many different routes for targeted gene expression are available and with the help of Synthetic Biol...
SummaryThe genetic interrogation and reprogramming of cells requires methods for robust and precise ...
Genetic circuits require many regulatory parts in order to implement signal processing or execute al...
SummaryTargeted gene regulation on a genome-wide scale is a powerful strategy for interrogating, per...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
Metabolic engineering of the yeast Saccharomyces cerevisiae by altering the abundance of native gene...
Metabolic engineering of the yeast Saccharomyces cerevisiae by altering the abundance of native gene...
Large synthetic genetic circuits require the simultaneous expression of many regulators. Deactivated...
Robust control over gene expression is necessary for diverse applications in molecular biology, synt...
Introduction: Both CRISPR/dCas9 and CRISPR/dCpf1 genome editing systems have shown exciting promises...
The robust and precise on and off switching of one or more genes of interest, followed by expressio...
The robust and precise on and off switching of one or more genes of interest, followed by expressio...
The robust and precise on and off switching of one or more genes of interest, followed by expressio...
The robust and precise on and off switching of one or more genes of interest, followed by expressio...
The robust and precise on and off switching of one or more genes of interest, followed by expression...
Many different routes for targeted gene expression are available and with the help of Synthetic Biol...
SummaryThe genetic interrogation and reprogramming of cells requires methods for robust and precise ...
Genetic circuits require many regulatory parts in order to implement signal processing or execute al...
SummaryTargeted gene regulation on a genome-wide scale is a powerful strategy for interrogating, per...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
Metabolic engineering of the yeast Saccharomyces cerevisiae by altering the abundance of native gene...
Metabolic engineering of the yeast Saccharomyces cerevisiae by altering the abundance of native gene...
Large synthetic genetic circuits require the simultaneous expression of many regulators. Deactivated...
Robust control over gene expression is necessary for diverse applications in molecular biology, synt...
Introduction: Both CRISPR/dCas9 and CRISPR/dCpf1 genome editing systems have shown exciting promises...