A high-density CRISPR activation platform for mapping cancer dependencies and resistance pathways ex vivo and in vivo

CRISPR activation (CRISPRa) enables precise up-regulation of gene expression for ex vivo and in vivo applications. However, a lack of scalable, high-coverage tools has limited comprehensive genetic screening in murine models. Here, we introduce Partita, a next-generation mouse whole-genome CRISPRa sgRNA platform, designed for unparalleled efficiency in gene activation studies. Partita uses a high-density targeting strategy, deploying 10 sgRNAs per transcriptional start site, structured into five gene class-specific sublibraries to maximize transcriptional induction. To demonstrate the capabilities of Partita, we performed a series of large-scale screens: an in vitro enrichment/depletion screen, whole-genome CRISPRa screens in a double-hit lymphoma model to uncover resistance factors to proapoptotic drugs (venetoclax, nutlin-3a, and etoposide) and an in vivo screen to identify accelerators of MYC-driven lymphomagenesis. Each experiment revealed both expected and unexpected regulators, with high validation rates. By enabling robust gain-of-function screening, Partita unlocks new avenues for functional genomics and expands the toolkit for discovering key drivers of biological processes across diverse research fields.

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Publication Details

Journal
Science Advances
Published
2026-09-18
DOI
https://doi.org/10.1126/sciadv.aec0722
Primary Topic
CRISPR and Genetic Engineering
Type
article
Field-Weighted Citation Impact
0.00

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article

A high-density CRISPR activation platform for mapping cancer dependencies and resistance pathways ex vivo and in vivo

Gemma L. Kelly, Catherine Chang, Kristel M. Dorighi, Sarah T. Diepstraten et al.
Science Advances
CRISPR and Genetic Engineering
article

A high-density CRISPR activation platform for mapping cancer dependencies and resistance pathways ex vivo and in vivo

Gemma L. Kelly, Catherine Chang, Kristel M. Dorighi, Sarah T. Diepstraten, Andrew J. Kueh, Margaret A. Potts, Benjamin Haley, Christina Koenig, John E. La Marca, Marco J. Herold, Lin Tai, Yexuan Deng, Lauren Whelan, Amy Heidersbach, Jean-Philippe Fortin, Felix Brown
article en

Abstract

CRISPR activation (CRISPRa) enables precise up-regulation of gene expression for ex vivo and in vivo applications. However, a lack of scalable, high-coverage tools has limited comprehensive genetic screening in murine models. Here, we introduce Partita, a next-generation mouse whole-genome CRISPRa sgRNA platform, designed for unparalleled efficiency in gene activation studies. Partita uses a high-density targeting strategy, deploying 10 sgRNAs per transcriptional start site, structured into five gene class-specific sublibraries to maximize transcriptional induction. To demonstrate the capabilities of Partita, we performed a series of large-scale screens: an in vitro enrichment/depletion screen, whole-genome CRISPRa screens in a double-hit lymphoma model to uncover resistance factors to proapoptotic drugs (venetoclax, nutlin-3a, and etoposide) and an in vivo screen to identify accelerators of MYC-driven lymphomagenesis. Each experiment revealed both expected and unexpected regulators, with high validation rates. By enabling robust gain-of-function screening, Partita unlocks new avenues for functional genomics and expands the toolkit for discovering key drivers of biological processes across diverse research fields.

Science AdvancesVol. 12(38)
The University of Melbourne (AU), Walter and Eliza Hall Institute of Medical Research (AU), La Trobe University (AU), Olivia Newton-John Cancer Wellness & Research Centre (AU), Olivia Newton-John Cancer Research Institute (AU), Nanjing University (CN)
Victorian Cancer Agency, Cancer Council Australia, National Natural Science Foundation of China-Shanxi Joint Fund for Coal-Based Low-Carbon Technology
Openalex Percentile: Top 18%
CRISPR and Genetic Engineering
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