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Updated: May 5, 2026

Pooled CRISPR-Based Genetic Screens in Mammalian Cells
Published on: September 4, 2019
CRISPR-Cas9 screens reveal common essential miRNAs in human cancer cell lines
Daniel J Merk1,2, Linda Paul1,2, Foteini Tsiami1,2
1Department of Neurology and Interdisciplinary Neuro-Oncology, Hertie Institute for Clinical Brain Research, University Hospital Tübingen, Eberhard Karls University Tübingen, Tübingen, 72076, Germany.
Background:
Genome-wide functional screening using the CRISPR-Cas9 system is a powerful tool to uncover tumor-specific and common genetic dependencies across cancer cell lines. Current CRISPR-Cas9 knockout libraries, however, primarily target protein-coding genes. This limits functional genomics-based investigations of miRNA function.
Methods:
We designed a novel CRISPR-Cas9 knockout library (lentiG-miR) of 8107 distinct sgRNAs targeting a total of 1769 human miRNAs and benchmarked its single guide RNA (sgRNA) composition, predicted on- and off-target activity, and screening performance against previous libraries. Using a total of 45 human cancer cell lines, representing 16 different tumor entities, we performed negative selection screens to identify miRNA fitness genes. Fitness miRNAs in each cell line were scored using a combination of supervised and unsupervised essentiality classifiers. Common essential miRNAs across distinct cancer cell lines were determined using the 90th percentile method. For subsequent validation, we performed knockout experiments for selected common essential miRNAs in distinct cancer cell lines and gene expression profiling.
Results:
We found significantly lower off-target activity for protein-coding genes and a higher miRNA gene coverage for lentiG-miR as compared to previously described miRNA-targeting libraries, while preserving high on-target activity. A minor fraction of miRNAs displayed robust depletion of targeting sgRNAs, and we observed a high level of consistency between redundant sgRNAs targeting the same miRNA gene. Across 45 human cancer cell lines, only 217 (12%) of all targeted human miRNAs scored as a fitness gene in at least one model, and fitness effects for most miRNAs were confined to small subsets of cell lines. In contrast, we identified 49 common essential miRNAs with a homogenous fitness profile across the vast majority of all cell lines. Transcriptional profiling verified highly consistent gene expression changes in response to knockout of individual common essential miRNAs across a diverse set of cancer cell lines.
Conclusions:
Our study presents a miRNA-targeting CRISPR-Cas9 knockout library with high gene coverage and optimized on- and off-target activities. Taking advantage of the lentiG-miR library, we define a catalogue of miRNA fitness genes in human cancer cell lines, providing the foundation for further investigation of miRNAs in human cancer.
Insights
A new CRISPR-Cas9 library (lentiG-miR) enables functional genomics of microRNAs (miRNAs) in cancer. Researchers identified 49 common essential miRNAs critical for cancer cell fitness across multiple cell lines.
Area of Science:
- * Functional genomics and cancer research.
- * CRISPR-Cas9 technology applications.
- * MicroRNA (miRNA) biology and cancer therapeutics.
Background:
- * CRISPR-Cas9 screening is vital for identifying cancer dependencies.
- * Existing libraries predominantly target protein-coding genes, limiting microRNA (miRNA) functional studies.
- * Investigating miRNA roles in cancer requires specialized screening tools.
Purpose of the Study:
- * To develop and validate a novel CRISPR-Cas9 knockout library (lentiG-miR) for comprehensive microRNA (miRNA) targeting.
- * To identify common essential microRNA (miRNA) fitness genes across diverse human cancer cell lines.
- * To establish a foundation for understanding microRNA (miRNA) functions in human cancer.
Main Methods:
- * Designed lentiG-miR library targeting 1769 human microRNAs (miRNAs) with 8107 sgRNAs.
- * Performed negative selection screens in 45 cancer cell lines to identify fitness miRNAs.
- * Utilized supervised/unsupervised classifiers and gene expression profiling for analysis and validation.
Main Results:
- * lentiG-miR demonstrated reduced off-target effects and enhanced microRNA (miRNA) coverage compared to prior libraries.
- * Identified 49 common essential microRNAs (miRNAs) with consistent fitness effects across most cell lines.
- * Knockout of common essential miRNAs induced highly consistent gene expression changes.
Conclusions:
- * The lentiG-miR library offers high coverage and optimized activity for microRNA (miRNA) targeting.
- * A catalogue of common essential microRNA (miRNA) fitness genes in human cancer was established.
- * This work provides a basis for future research into microRNA (miRNA) roles in cancer development and progression.
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