GEMap: A comprehensive gene essentiality map for drug discovery

Saisai Tian1, Yixue Liang2, Jinbo Zhang1,3

  • 1Department of Phytochemistry, School of Pharmacy, Second Military Medical University, Shanghai 200433, China.

Insights

GEMap integrates CRISPR essentiality data with drug discovery resources to identify new cancer therapies. This platform aids in targeting previously undruggable oncogenes for precision oncology.

Area of Science:

  • Genomics
  • Drug Discovery
  • Computational Biology

Background:

  • Gene essentiality mapping identifies therapeutic vulnerabilities in cancer.
  • Existing platforms lack integration between CRISPR functional genomics and drug discovery.

Purpose of the Study:

  • To develop GEMap, a novel platform integrating CRISPR-Cas9 essentiality profiles with multi-omics and drug data.
  • To enable exploration of gene dependency, target prioritization, and drug discovery for precision oncology.

Main Methods:

  • Combined genome-wide CRISPR-Cas9 essentiality screens (1912 screens, 1135 cell lines) with multi-omics data and drug profiles (20,000+ compounds).
  • Developed functionalities for exploring multimodal gene data, prioritizing context-specific targets, and discovering tailored treatments.

Main Results:

  • GEMap allows exploration of gene dependency, expression, CNV, and mutation data across cancer cell lines and tissues.
  • The platform facilitates prioritization of context-specific therapeutic targets, exemplified by KRAS mutant cancers.
  • GEMap enables discovery of drug candidates by integrating large-scale drug perturbation and target data.

Conclusions:

  • GEMap is the first platform to bridge CRISPR genetic dependencies with pharmacological responses and biological networks.
  • It establishes an open-access paradigm for accelerating precision oncology, particularly against undruggable targets.
  • The platform is available at https://web.biotcm.net/GEMap/ for broader research use.

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