Anticancer Target Combinations: Network-Informed Signaling-Based Approach to Discovery

Bengi Ruken Yavuz1, Hyunbum Jang1,2, Ruth Nussinov1,2,3

  • 1Cancer Innovation Laboratory, National Cancer Institute at Frederick, Frederick, MD 21702, USA.

Insights

This study introduces a novel signaling pathway method to identify optimal drug combinations for cancer therapy, aiming to overcome drug resistance by targeting key proteins. The approach was successfully applied to breast and colorectal cancer patient data.

Area of Science:

  • Oncology
  • Computational Biology
  • Pharmacology

Background:

  • Anticancer drug discovery faces challenges with sequential single therapies due to resistance.
  • Combinatorial drug strategies are vast and require precise selection of co-targets.
  • Current combination selection relies heavily on empirical observations and clinical practice.

Purpose of the Study:

  • To develop and validate a signaling pathway-based method for discovering optimal protein co-targets for cancer drug combinations.
  • To address and temper drug resistance by identifying strategies that block parallel or complementary cancer signaling pathways.
  • To test the pipeline on patient-derived data for breast and colorectal cancers.

Main Methods:

  • A network-informed, signaling-based pipeline was developed to identify co-targets.
  • The pipeline utilizes network concepts, metrics, and tissue-specific co-existing mutations.
  • Applied to patient-derived ESR1|PIK3CA and BRAF|PIK3CA subnetworks in breast and colorectal cancers.

Main Results:

  • For breast cancer, suggested co-targeting of the ESR1|PIK3CA subnetwork with an alpelisib-LJM716 combination.
  • For colorectal cancer, suggested co-targeting of the BRAF|PIK3CA subnetwork with alpelisib, cetuximab, and encorafenib.
  • Results were validated using patient-based xenografts.

Conclusions:

  • The developed pipeline offers a promising, signaling-based approach for selecting effective drug combinations.
  • This method aids in overcoming cancer drug resistance by targeting complementary signaling pathways.
  • The findings provide a foundation for more rational and effective combinatorial cancer therapies.

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