Linking tumor mutations to drug responses via a quantitative chemical-genetic interaction map

Maria M Martins1, Alicia Y Zhou1, Alexandra Corella1

  • 1University of California, San Francisco, San Francisco, California.

Cancer Discovery
|December 16, 2014
PubMed
Abstract

Insights

This study maps cancer gene mutations to drug responses using isogenic cells. Findings reveal new genotype-directed therapies and biomarkers for personalized oncology, including for triple-negative breast cancer.

Area of Science:

  • Oncology
  • Genomics
  • Pharmacology

Background:

  • Linking tumor molecular aberrations to personalized therapeutics is crucial in oncology.
  • Understanding how genomic abnormalities impact drug responses is a significant challenge.

Purpose of the Study:

  • To develop a systematic chemical-genetic interaction map connecting 51 cancer genes to 90 drug responses.
  • To apply this map to identify clinically actionable genotype-directed therapies, particularly for triple-negative breast cancer.

Main Methods:

  • Utilized engineered isogenic cell lines to create a quantitative chemical-genetic interaction map.
  • Validated the map's predictive power using cancer cell line collections.
  • Investigated interactions with the MYC oncogene in triple-negative breast cancer.

Main Results:

  • The generated dataset accurately predicts drug responses in cancer cell lines.
  • Identified resistance to AKT-PI3K inhibitors in MYC-aberrant cancers.
  • Discovered synthetic-lethal sensitivity to dasatinib via LYN inhibition in MYC-driven cancers.

Conclusions:

  • The scalable approach enables prediction of drug responses from patient data.
  • Identified novel drug and biomarker pairs for clinical investigation.
  • Accelerates the development of personalized, genotype-directed cancer therapies.

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