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Multiplexed single-cell profiling of post-perturbation transcriptional responses to define cancer vulnerabilities and therapeutic mechanism of action

Authors :
Francisca Vazquez
Kathryn Geiger-Schuller
Danielle Dionne
Tsukasa Shibue
Samantha Bender
Todd R. Golub
Aviad Tsherniak
Andrew Jones
Orit Rozenblatt-Rosen
Andrew J. Aguirre
Mahmoud Ghandi
Brenton R. Paolella
James M. McFarland
Aviv Regev
Brian M. Wolpin
Allison Warren
Jennifer Roth
Emily Chambers
Michael V. Rothberg
Itay Tirosh
Olena Kuksenko
Publication Year :
2019
Publisher :
Cold Spring Harbor Laboratory, 2019.

Abstract

Assays to study cancer cell responses to pharmacologic or genetic perturbations are typically restricted to using simple phenotypic readouts such as proliferation rate or the expression of a marker gene. Information-rich assays, such as gene-expression profiling, are generally not amenable to efficient profiling of a given perturbation across multiple cellular contexts. Here, we developed MIX-Seq, a method for multiplexed transcriptional profiling of post-perturbation responses across a mixture of samples with single-cell resolution, using SNP-based computational demultiplexing of single-cell RNA-sequencing data. We show that MIX-Seq can be used to profile responses to chemical or genetic perturbations across pools of 100 or more cancer cell lines, and combine it with Cell Hashing to further multiplex additional experimental conditions, such as multiple post-treatment time points or drug doses. Analyzing the high-content readout of scRNA-seq reveals both shared and context-specific transcriptional response components that can identify drug mechanism of action and can be used to predict long-term cell viability from short-term transcriptional responses to treatment.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....6bfc2ab347c32bbb295486f8878ef2cf
Full Text :
https://doi.org/10.1101/868752