Isogenic cells in culture show strong variability, which arises from dynamic adaptations to the microenvironment of individual cells. Here we study the influence of the cell population context, which determines a single cell's microenvironment, in image-based RNAi screens. We developed a comprehensive computational approach that employs Bayesian and multivariate methods at the single-cell level. We applied these methods to 45 RNA interference screens of various sizes, including 7 druggable genome and 2 genome-wide screens, analysing 17 different mammalian virus infections and four related cell physiological processes. Analysing cell-based screens at this depth reveals widespread RNAi-induced changes in the population context of individual c...
Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan ...
Pooled CRISPR screens are emerging as a powerful tool to dissect regulatory networks, by assessing h...
Single-cell sequencing technologies, i.e., single cell analysis followed by deep sequencing investig...
Isogenic cells in culture show strong variability, which arises from dynamic adaptations to the micr...
Single-cell analyses allow uncovering cellular heterogeneity, not only per se, but also in response ...
Systematic genetic perturbation screening in human cells remains technically challenging. Typically,...
With the advent of RNA sequencing and other high- throughput molecular assays, RNA biology has recen...
Large-scale RNAi screening has become an important technology for identifying genes involved in biol...
AbstractGenetic and environmental factors will influence the growth of an RNA virus, but their relat...
SummaryRNA interference (RNAi) has been extensively used to identify host factors affecting virus in...
Single-cell transcriptomic technologies have emerged as powerful tools to explore cellular heterogen...
Abstract Background High Content Screening has been shown to improve results of RNAi and other pertu...
The ability to quantify a large number of varied transcripts in single cells in their native spatial...
Genetic screens help infer gene function in mammalian cells, but it has remained difficult to assay ...
We describe a universal sample multiplexing method for single-cell RNA sequencing in which fixed cel...
Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan ...
Pooled CRISPR screens are emerging as a powerful tool to dissect regulatory networks, by assessing h...
Single-cell sequencing technologies, i.e., single cell analysis followed by deep sequencing investig...
Isogenic cells in culture show strong variability, which arises from dynamic adaptations to the micr...
Single-cell analyses allow uncovering cellular heterogeneity, not only per se, but also in response ...
Systematic genetic perturbation screening in human cells remains technically challenging. Typically,...
With the advent of RNA sequencing and other high- throughput molecular assays, RNA biology has recen...
Large-scale RNAi screening has become an important technology for identifying genes involved in biol...
AbstractGenetic and environmental factors will influence the growth of an RNA virus, but their relat...
SummaryRNA interference (RNAi) has been extensively used to identify host factors affecting virus in...
Single-cell transcriptomic technologies have emerged as powerful tools to explore cellular heterogen...
Abstract Background High Content Screening has been shown to improve results of RNAi and other pertu...
The ability to quantify a large number of varied transcripts in single cells in their native spatial...
Genetic screens help infer gene function in mammalian cells, but it has remained difficult to assay ...
We describe a universal sample multiplexing method for single-cell RNA sequencing in which fixed cel...
Phenotypically identical cells can dramatically vary with respect to behavior during their lifespan ...
Pooled CRISPR screens are emerging as a powerful tool to dissect regulatory networks, by assessing h...
Single-cell sequencing technologies, i.e., single cell analysis followed by deep sequencing investig...