Study / S97G30JHY2015-11-17

Massively parallel cis-regulatory analysis in the mammalian central nervous system

Susan Q. Shen, Connie A. Myers, Andrew E.O. Hughes, Leah C. Byrne, John G. Flannery et al.

About this study

Cis-regulatory elements (CREs, e.g., promoters and enhancers) regulate gene expression, and variants within CREs can modulate disease risk. Next-generation sequencing has enabled the rapid generation of genomic data that predict the locations of CREs, but a bottleneck lies in functionally interpreting these data. To address this issue, massively parallel reporter assays (MPRAs) have emerged, in which barcoded reporter libraries are introduced into cells, and the resulting barcoded transcripts are quantified by next-generation sequencing. Thus far, MPRAs have been largely restricted to assaying short CREs in a limited repertoire of cultured cell types. Here, we present two advances that extend the biological relevance and applicability of MPRAs. First, we adapt exome capture technology to instead capture candidate CREs, thereby tiling across the targeted regions and markedly increasing the length of CREs that can be readily assayed. Second, we package the library into adeno-associated virus (AAV), thereby allowing delivery to target organs in vivo. As a proof of concept, we introduce a capture library of about 46,000 constructs, corresponding to roughly 3500 DNase I hypersensitive (DHS) sites, into the mouse retina by ex vivo plasmid electroporation and into the mouse cerebral cortex by in vivo AAV injection. We demonstrate tissue-specific cis-regulatory activity of DHSs and provide examples of high-resolution truncation mutation analysis for multiplex parsing of CREs. Our approach should enable massively parallel functional analysis of a wide range of CREs in any organ or species that can be infected by AAV, such as nonhuman primates and human stem cell–derived organoids.

Full author list & citation

Susan Q. Shen, Connie A. Myers, Andrew E.O. Hughes, Leah C. Byrne, John G. Flannery, Joseph C. Corbo. Massively parallel cis-regulatory analysis in the mammalian central nervous system. 2015-11-17. https://doi.org/10.1101/gr.193789.115

Experiments 2

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Capture-and-clone CRE-seq in ex vivo mouse retina

A capture-and-clone CRE-seq library of approximately 45,670 uniquely barcoded mouse genomic fragments targeting 4,000 tissue-specific DHS regions was delivered by ex vivo plasmid electroporation into P0 CD-1 mouse retinas and cultured for 8 days. Three biological replicates, each pooled from five retinas, were quantified by barcode RNA/DNA sequencing.

Episomal Plasmid MPRAMousemm9
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AAV-mediated capture-and-clone CRE-seq in mouse cerebral cortex

The capture-and-clone CRE-seq library was packaged in AAV9(2YF) and injected bilaterally into the primary motor cortex of 4–6-week-old CD-1 mice. Three biological replicates, each from one mouse and harvested 4–5 weeks later, were quantified by barcode RNA/DNA sequencing of microdissected GFP-positive cortical tissue.

AAV-MPRA / in vivo MPRAMousemm9
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Raw source data 10 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 10 files (ZIP)GSE68247_family.soft.gzGSE68247_filelist.txtGSE68247_RAW.tarGSM1666269_MiSeq_combined_45670_annotated_copy1.txt.gzGSM1666271_MiSeq_combined_45670_annotated_copy2.txt.gzGSM1666273_HiSeq_expression_retina.txt.gzGSM1666273_HiSeq_raw_counts_annotated_retina.txt.gzGSM1666275_HiSeq_expression_cortex.txt.gzGSM1666275_HiSeq_raw_counts_annotated_cortex.txt.gzsource_manifest.txt

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