Detection of gene cis-regulatory element perturbations in single-cell transcriptomes

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Abstract

We introduce poly-adenine CRISPR gRNA-based single-cell RNA-sequencing (pAC-Seq), a method that enables the direct observation of guide RNAs (gRNAs) in scRNA-seq. We use pAC-Seq to assess the phenotypic consequences of CRISPR/Cas9 based alterations of gene cis-regulatory regions. We show that pAC-Seq is able to detect cis-regulatory-induced alteration of target gene expression even when biallelic loss of target gene expression occurs in only ~5% of cells. This low rate of biallelic loss significantly increases the number of cells required to detect the consequences of changes to the regulatory genome, but can be ameliorated by transcript-targeted sequencing. Based on our experimental results we model the power to detect regulatory genome induced transcriptomic effects based on the rate of mono/biallelic loss, baseline gene expression, and the number of cells per target gRNA.

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APA

Yeo, G. H. T., Juez, O., Chen, Q., Banerjee, B., Chu, L., Shen, M. W., … Gifford, D. K. (2021). Detection of gene cis-regulatory element perturbations in single-cell transcriptomes. PLoS Computational Biology, 17(3). https://doi.org/10.1371/journal.pcbi.1008789

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