Study / S7YQNZ3IP2023-04-25

An unbiased AAV-STARR-seq screen revealing the enhancer activity map of genomic regions in the mouse brain in vivo

Ya-Chien Chan, Eike Kienle, Martin Oti, Antonella Di Liddo, Maria Mendez-Lago et al.

About this study

Enhancers are important cis-regulatory elements controlling cell-type specific expression patterns of genes. Furthermore, combinations of enhancers and minimal promoters are utilized to construct small, artificial promoters for gene delivery vectors. Large-scale functional screening methodology to construct genomic maps of enhancer activities has been successfully established in cultured cell lines, however, not yet applied to terminally differentiated cells and tissues in a living animal. Here, we transposed the Self-Transcribing Active Regulatory Region Sequencing (STARR-seq) technique to the mouse brain using adeno-associated-viruses (AAV) for the delivery of a highly complex screening library tiling entire genomic regions and covering in total 3 Mb of the mouse genome. We identified 483 sequences with enhancer activity, including sequences that were not predicted by DNA accessibility or histone marks. Characterizing the expression patterns of fluorescent reporters controlled by nine candidate sequences, we observed differential expression patterns also in sparse cell types. Together, our study provides an entry point for the unbiased study of enhancer activities in organisms during health and disease.

Full author list & citation

Ya-Chien Chan, Eike Kienle, Martin Oti, Antonella Di Liddo, Maria Mendez-Lago, Dominik F. Aschauer, Manuel Peter, Michaela Pagani, Cosmas Arnold, Andreas Vonderheit, Christian Schön, Sebastian Kreuz, Alexander Stark, Simon Rumpel. An unbiased AAV-STARR-seq screen revealing the enhancer activity map of genomic regions in the mouse brain in vivo. 2023-04-25. https://doi.org/10.1038/s41598-023-33448-w

Experiments 1

E97OSFGNL

AAV-STARR-seq enhancer screen in mouse neocortex

An unbiased library of approximately 700-bp mouse genomic fragments from nine BAC-covered loci spanning about 3 Mb was cloned downstream of a 4.26 minimal promoter in a self-transcribing STARR-seq reporter and packaged in AAV8. The library was injected into the dorsal neocortex of adult male C57BL/6JRj mice; poly(A) RNA from five analyzed animals was compared with three AAV-packaged viral-DNA input replicates to identify reproducible enhancer peaks.

AAV-MPRA / in vivo MPRAMousemm10
Explore data

Raw source data 29 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 29 files (ZIP)41598_2023_33448_MOESM1_ESM.pdfGSE197005_family.soft.gzGSE197005_filelist.txtGSE197005_starrpeaker_common_RNA_q09_peaks.bed.gzGSM5906706_peaks_BAC_regions_0.9_D1_DNA_1.peak.final.bed.gzGSM5906706_peaks_BAC_regions_0.9_D2_DNA_1.peak.final.bed.gzGSM5906706_peaks_BAC_regions_0.9_D3_DNA_1.peak.final.bed.gzGSM5906706_STARRseq_RNA_mouse_1.unique.bwGSM5906707_peaks_BAC_regions_0.9_D1_DNA_2.peak.final.bed.gzGSM5906707_peaks_BAC_regions_0.9_D2_DNA_2.peak.final.bed.gzGSM5906707_peaks_BAC_regions_0.9_D3_DNA_2.peak.final.bed.gzGSM5906707_STARRseq_RNA_mouse_2.unique.bwGSM5906708_peaks_BAC_regions_0.9_D1_DNA_3.peak.final.bed.gzGSM5906708_peaks_BAC_regions_0.9_D2_DNA_3.peak.final.bed.gzGSM5906708_peaks_BAC_regions_0.9_D3_DNA_3.peak.final.bed.gzGSM5906708_STARRseq_RNA_mouse_3.unique.bwGSM5906709_peaks_BAC_regions_0.9_D1_DNA_4.peak.final.bed.gzGSM5906709_peaks_BAC_regions_0.9_D2_DNA_4.peak.final.bed.gzGSM5906709_peaks_BAC_regions_0.9_D3_DNA_4.peak.final.bed.gzGSM5906709_STARRseq_RNA_mouse_4.unique.bwGSM5906710_peaks_BAC_regions_0.9_D1_DNA_5.peak.final.bed.gzGSM5906710_peaks_BAC_regions_0.9_D2_DNA_5.peak.final.bed.gzGSM5906710_peaks_BAC_regions_0.9_D3_DNA_5.peak.final.bed.gzGSM5906710_STARRseq_RNA_mouse_5.unique.bwGSM5906711_STARRseq_RNA_mouse_6.unique.bwGSM5906712_input_BAC_vDNA_1.unique.bwGSM5906713_input_BAC_vDNA_2.unique.bwGSM5906714_input_BAC_vDNA_3.unique.bwREADME.md

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