Enhancers are cis-regulatory elements that play critical regulatory roles in modulating developmental transcription programs and driving cell-type-specific and context-dependent gene expression in the brain. The development of massively parallel reporter assays (MPRAs) has enabled high-throughput functional screening of candidate DNA sequences for enhancer activity. Tissue-specific screening of in vivo enhancer function at scale has the potential to greatly expand our understanding of the role of non-coding sequences in development, evolution, and disease. Here, we adapted a self-transcribing regulatory element MPRA strategy for delivery to early postnatal mouse brain via recombinant adeno-associated virus (rAAV). We identified and validate...
Brain development is a complex process requiring precise coordination of molecular processes across ...
<div><p>Genetic studies have identified a core set of transcription factors and target genes that co...
Elucidating the transcriptional circuitry controlling forebrain development requires an understandin...
Enhancers are cis-regulatory elements that play critical regulatory roles in modulating developmenta...
Viral genetic tools to target specific brain cell types in humans and non-genetic model organisms wi...
Enhancers are binding platforms for a diverse array of transcription factors that drive specific exp...
Viral genetic tools that target specific brain cell types could transform basic neuroscience and tar...
Cis-regulatory elements (CREs, e.g., promoters and enhancers) regulate gene expression, and variants...
Cis-regulatory elements (CREs, e.g., promoters and enhancers) regulate gene expression, and variants...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
Brain development is a complex process requiring precise coordination of molecular processes across ...
Transcriptional enhancers are regulatory DNA elements that underlie the specificity and dynamic patt...
Brain development is a complex process requiring precise coordination of molecular processes across ...
<div><p>Genetic studies have identified a core set of transcription factors and target genes that co...
Elucidating the transcriptional circuitry controlling forebrain development requires an understandin...
Enhancers are cis-regulatory elements that play critical regulatory roles in modulating developmenta...
Viral genetic tools to target specific brain cell types in humans and non-genetic model organisms wi...
Enhancers are binding platforms for a diverse array of transcription factors that drive specific exp...
Viral genetic tools that target specific brain cell types could transform basic neuroscience and tar...
Cis-regulatory elements (CREs, e.g., promoters and enhancers) regulate gene expression, and variants...
Cis-regulatory elements (CREs, e.g., promoters and enhancers) regulate gene expression, and variants...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
Brain development is a complex process requiring precise coordination of molecular processes across ...
Transcriptional enhancers are regulatory DNA elements that underlie the specificity and dynamic patt...
Brain development is a complex process requiring precise coordination of molecular processes across ...
<div><p>Genetic studies have identified a core set of transcription factors and target genes that co...
Elucidating the transcriptional circuitry controlling forebrain development requires an understandin...