Dependency Map correlation analysis reveals WDR89 as a genome maintenance factor

The Cancer Dependency map project (DepMap) has created an unprecedented resource of siRNA and CRISPR genetic screens across more than 1000 cell line models. Numerous computational tools have been developed to analyze DepMap outputs and have revealed new genetic dependencies relevant to cancer. Here we extracted correlation information from the DepMap using curated gene sets of biological pathways to determine if this approach could reveal new high confidence candidates. Beginning with a set of curated DNA repair proteins we determined correlations of query gene knockout fitness across all DepMap cell lines. As expected, this approach extracted many known genome stability genes and also suggested several additional candidates not previously linked to genome maintenance. To validate our analysis we used siRNA depletion for candidate genes and identified several factors whose depletion increases DNA damage or delay repair. Among these was WDR89. WDR89 nucleolar intensity increases in an ATM dependent manner upon DNA damage and WDR89 physically interacts with a number of nucleolar proteins. Depletion of WDR89 leads to accumulation of p53 in the nucleus, p21 accumulation and G2/M cell cycle arrest 24 hours post-irradiation. These data establish WDR89 as a new genome stability regulator and highlight the value of DepMap for predicting previously unknown biology.

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Publication Details

Journal
Molecular Biology of the Cell
Published
2026-10-08
DOI
https://doi.org/10.1091/mbc.e26-02-0067
Primary Topic
DNA Repair Mechanisms
Type
article
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article

Dependency Map correlation analysis reveals WDR89 as a genome maintenance factor

Sean W. Minaker, Peter C. Stirling, Gregg B. Morin, Gian Luca Negri
Molecular Biology of the Cell
DNA Repair Mechanisms
article

Dependency Map correlation analysis reveals WDR89 as a genome maintenance factor

Sean W. Minaker, Peter C. Stirling, Gregg B. Morin, Gian Luca Negri
article en

Abstract

The Cancer Dependency map project (DepMap) has created an unprecedented resource of siRNA and CRISPR genetic screens across more than 1000 cell line models. Numerous computational tools have been developed to analyze DepMap outputs and have revealed new genetic dependencies relevant to cancer. Here we extracted correlation information from the DepMap using curated gene sets of biological pathways to determine if this approach could reveal new high confidence candidates. Beginning with a set of curated DNA repair proteins we determined correlations of query gene knockout fitness across all DepMap cell lines. As expected, this approach extracted many known genome stability genes and also suggested several additional candidates not previously linked to genome maintenance. To validate our analysis we used siRNA depletion for candidate genes and identified several factors whose depletion increases DNA damage or delay repair. Among these was WDR89. WDR89 nucleolar intensity increases in an ATM dependent manner upon DNA damage and WDR89 physically interacts with a number of nucleolar proteins. Depletion of WDR89 leads to accumulation of p53 in the nucleus, p21 accumulation and G2/M cell cycle arrest 24 hours post-irradiation. These data establish WDR89 as a new genome stability regulator and highlight the value of DepMap for predicting previously unknown biology.

Molecular Biology of the Cell
BC Cancer Agency (CA)
Openalex Percentile: Top 22%
DNA Repair Mechanisms
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Dependency Map correlation analysis reveals WDR89 as a genome maintenance factor — Sean W. Minaker, Peter C. Stirling, et al. · Molecular Biology of the Cell (2026) | TGRS Research Map | TGRS