Study / S6CBGSODG2019-09-23
A scalable platform for the development of cell-type-specific viral drivers
Sinisa Hrvatin, Christopher P Tzeng, M Aurel Nagy, Hume Stroud, Charalampia Koutsioumpa et al.
About this study
Enhancers are the primary DNA regulatory elements that confer cell type specificity of gene expression. Recent studies characterizing individual enhancers have revealed their potential to direct heterologous gene expression in a highly cell-type-specific manner. However, it has not yet been possible to systematically identify and test the function of enhancers for each of the many cell types in an organism. We have developed PESCA, a scalable and generalizable method that leverages ATAC- and single-cell RNA-sequencing protocols, to characterize cell-type-specific enhancers that should enable genetic access and perturbation of gene function across mammalian cell types. Focusing on the highly heterogeneous mammalian cerebral cortex, we apply PESCA to find enhancers and generate viral reagents capable of accessing and manipulating a subset of somatostatin-expressing cortical interneurons with high specificity. This study demonstrates the utility of this platform for developing new cell-type-specific viral reagents, with significant implications for both basic and translational research.
Full author list & citation
Sinisa Hrvatin, Christopher P Tzeng, M Aurel Nagy, Hume Stroud, Charalampia Koutsioumpa, Oren F Wilcox, Elena G Assad, Jonathan Green, Christopher D Harvey, Eric C Griffith, Michael E Greenberg. A scalable platform for the development of cell-type-specific viral drivers. 2019-09-23. https://doi.org/10.7554/eLife.48089
Experiments 1
E3ECG835B
A pooled AAV9 library of 287 candidate genomic gene regulatory elements (GREs), each represented by three unique 10-bp barcodes, was injected into primary visual cortex of two adult C57BL/6J mice. A modified inDrops single-nucleus RNA-seq assay with PCR enrichment of viral transcripts measured GRE-barcode UMI expression across ten cortical cell types, with SST-versus-non-SST enrichment reported.