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March 3, 20264 citationsOpen Access

Genome-wide single-cell perturbation screens with VIPerturb-seq

ABAlexandra BraduNew York Genome CenterJBJohn D. BlairWarwick HospitalIGIsabella N. GrabskiHarvard University

Key Points

  • VIPerturb-seq improves the efficiency of genome-wide screens by 50-fold, enhancing throughput.
  • The new split probe strategy detects CRISPR libraries more effectively in fixed cells with targeted enrichment.
  • Genome-wide CRISPRi libraries used with VIPerturb-seq allow for systematic identification of molecular phenotypes.
  • This approach supports both individual labs and large platforms, driving scalable data generation.

Abstract

CRISPR-based screening combined with single-cell sequencing (i.e. Perturb-seq) enables systematic mapping of genetic perturbations to molecular phenotypes. While Perturb-seq is well-suited to profile targeted subsets of regulators, scaling to genome-wide screens presents substantial cost and throughput challenges. Here we introduce VIPerturb-seq, a platform to facilitate routine genome-wide Perturb-seq experiments using probe-based detection workflows. We describe a split probe strategy for detection of genome-wide CRISPR libraries in fixed cells that enables (i) optional support for phenotypic enrichment of Very Important Perturbations (VIP) prior to single-cell profiling, and (ii) compatibility with combinatorial indexing workflows to further improve Perturb-seq throughput by 50-fold. Using a genome-wide CRISPRi library (GuEST-List), we demonstrate VIPerturb-seq on two genome-wide screens representing both unbiased and phenotypically enriched workflows. Our results demonstrate how the sensitivity, scalability, and efficiency of VIPerturb-seq can enable both individual labs with targeted research questions and large data generation platforms aiming to construct virtual cells.

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Cite This Study

Bradu et al. (2026) studied this question.

synapsesocial.com/papers/69a76105c6e9836116a2e85bhttps://doi.org/10.64898/2026.02.12.705613
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