SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout the genome are regulated in distinct ways by targeted regulatory assemblies. We have applied this principle to generate synthetic CRISPR-based transcriptional programs in yeast and human cells. By extending guide RNAs to include effector protein recruitment sites, we construct modular scaffold RNAs that encode both target locus and regulatory action. Sets of scaffold RNAs can be used to generate synthetic multigene transcriptional programs in which some genes are activated and others are repressed. We apply this approach to flexibly redirect flux through a complex branched metabolic pathway in yeast. Moreover, these programs can be executed by...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
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...
Eukaryotic cells execute complex transcriptional programs in which specific loci throughout the geno...
generate synthetic CRISPR-based transcriptional largely by the pattern of transcriptional activators...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
ABSTRACT: Transcriptional regulation is central to the complex behavior of natural biological system...
SummaryThe genetic interrogation and reprogramming of cells requires methods for robust and precise ...
RNA-based regulation and CRISPR/Cas transcription factors (CRISPR-TFs) have the potential to be inte...
CRISPR-based transcription regulators (CRISPR-TRs) have transformed the current synthetic biology la...
CRISPR-based transcription regulators (CRISPR-TRs) have transformed the current synthetic biology la...
Synthetic biology in mammalian cells holds great promise for reverse engineering biological processe...
SummaryThe genetic interrogation and reprogramming of cells requires methods for robust and precise ...
Many different routes for targeted gene expression are available and with the help of Synthetic Biol...
Technologies for engineering synthetic transcription factors have enabled many advances in medicine ...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
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...
Eukaryotic cells execute complex transcriptional programs in which specific loci throughout the geno...
generate synthetic CRISPR-based transcriptional largely by the pattern of transcriptional activators...
SummaryEukaryotic cells execute complex transcriptional programs in which specific loci throughout t...
ABSTRACT: Transcriptional regulation is central to the complex behavior of natural biological system...
SummaryThe genetic interrogation and reprogramming of cells requires methods for robust and precise ...
RNA-based regulation and CRISPR/Cas transcription factors (CRISPR-TFs) have the potential to be inte...
CRISPR-based transcription regulators (CRISPR-TRs) have transformed the current synthetic biology la...
CRISPR-based transcription regulators (CRISPR-TRs) have transformed the current synthetic biology la...
Synthetic biology in mammalian cells holds great promise for reverse engineering biological processe...
SummaryThe genetic interrogation and reprogramming of cells requires methods for robust and precise ...
Many different routes for targeted gene expression are available and with the help of Synthetic Biol...
Technologies for engineering synthetic transcription factors have enabled many advances in medicine ...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
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...