Gene expression can be activated or suppressed using CRISPR--Cas9 systems. However, tools that enable dose-dependent activation of gene expression without the use of exogenous transcription regulatory proteins are lacking. Here we describe chemical epigenetic modifiers (CEMs) designed to activate the expression of target genes by recruiting components of the endogenous chromatin-activating machinery, eliminating the need for exogenous transcriptional activators. The system has two parts: catalytically inactive Cas9 (dCas9) in complex with FK506-binding protein (FKBP) and a CEM consisting of FK506 linked to a molecule that interacts with cellular epigenetic machinery. We show that CEMs upregulate gene expression at target endogenous loci up ...
While the catalog of mammalian transcripts and their expression levels in different cell types and d...
The CRISPR-Cas9 system has revolutionized genome engineering, allowing precise modification of DNA i...
CRISPR/Cas9 technologies have been employed for genome editing to achieve gene knockouts and knock-i...
Gene expression can be activated or suppressed using CRISPR--Cas9 systems. However, tools that enabl...
Regulation of chromatin compaction is an important process that governs gene expression in higher eu...
Epigenome editing is a powerful method for life science research and could give rise to new therapie...
Dissecting the complex network of epigenetic modifications requires tools that combine precise recog...
Understanding the causal link between epigenetic marks and gene regulation remains a central questio...
The discovery of CRISPR (clustered regularly interspaced short palindromic repeats) gene editing tec...
SummaryTargeted gene regulation on a genome-wide scale is a powerful strategy for interrogating, per...
SummaryThe genetic interrogation and reprogramming of cells requires methods for robust and precise ...
Mammalian gene regulation is dependent on tissue-specific enhancers that can act across large distan...
The ability to artificially control transcription is essential both to the study of gene function an...
Targeted transcriptional regulation is a powerful tool to study genetic mediators of cellular behavi...
The CRISPR/Cas9 system is a powerful tool for studying gene function. Here, we describe a method tha...
While the catalog of mammalian transcripts and their expression levels in different cell types and d...
The CRISPR-Cas9 system has revolutionized genome engineering, allowing precise modification of DNA i...
CRISPR/Cas9 technologies have been employed for genome editing to achieve gene knockouts and knock-i...
Gene expression can be activated or suppressed using CRISPR--Cas9 systems. However, tools that enabl...
Regulation of chromatin compaction is an important process that governs gene expression in higher eu...
Epigenome editing is a powerful method for life science research and could give rise to new therapie...
Dissecting the complex network of epigenetic modifications requires tools that combine precise recog...
Understanding the causal link between epigenetic marks and gene regulation remains a central questio...
The discovery of CRISPR (clustered regularly interspaced short palindromic repeats) gene editing tec...
SummaryTargeted gene regulation on a genome-wide scale is a powerful strategy for interrogating, per...
SummaryThe genetic interrogation and reprogramming of cells requires methods for robust and precise ...
Mammalian gene regulation is dependent on tissue-specific enhancers that can act across large distan...
The ability to artificially control transcription is essential both to the study of gene function an...
Targeted transcriptional regulation is a powerful tool to study genetic mediators of cellular behavi...
The CRISPR/Cas9 system is a powerful tool for studying gene function. Here, we describe a method tha...
While the catalog of mammalian transcripts and their expression levels in different cell types and d...
The CRISPR-Cas9 system has revolutionized genome engineering, allowing precise modification of DNA i...
CRISPR/Cas9 technologies have been employed for genome editing to achieve gene knockouts and knock-i...