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Proteogenomic integration reveals therapeutic targets in breast cancer xenografts

  • Kuan Lin Huang
  • , Shunqiang Li
  • , Philipp Mertins
  • , Song Cao
  • , Harsha P. Gunawardena
  • , Kelly V. Ruggles
  • , D. R. Mani
  • , Karl R. Clauser
  • , Maki Tanioka
  • , Jerry Usary
  • , Shyam M. Kavuri
  • , Ling Xie
  • , Christopher Yoon
  • , Jana W. Qiao
  • , John Wrobel
  • , Matthew A. Wyczalkowski
  • , Petra Erdmann-Gilmore
  • , Jacqueline E. Snider
  • , Jeremy Hoog
  • , Purba Singh
  • Beifung Niu, Zhanfang Guo, Sam Qiancheng Sun, Souzan Sanati, Emily Kawaler, Xuya Wang, Adam Scott, Kai Ye, Michael D. McLellan, Michael C. Wendl, Anna Malovannaya, Jason M. Held, Michael A. Gillette, David Fenyö, Christopher R. Kinsinger, Mehdi Mesri, Henry Rodriguez, Sherri R. Davies, Charles M. Perou, Cynthia Ma, R. Reid Townsend, Xian Chen, Steven A. Carr, Matthew J. Ellis, Li Ding
  • Washington University St. Louis
  • Broad Institute
  • University of North Carolina at Chapel Hill
  • New York University
  • Baylor College of Medicine
  • National Institutes of Health

Research output: Contribution to journalArticlepeer-review

125 Scopus citations

Abstract

Recent advances in mass spectrometry (MS) have enabled extensive analysis of cancer proteomes. Here, we employed quantitative proteomics to profile protein expression across 24 breast cancer patient-derived xenograft (PDX) models. Integrated proteogenomic analysis shows positive correlation between expression measurements from transcriptomic and proteomic analyses; further, gene expression-based intrinsic subtypes are largely re-capitulated using non-stromal protein markers. Proteogenomic analysis also validates a number of predicted genomic targets in multiple receptor tyrosine kinases. However, several protein/phosphoprotein events such as overexpression of AKT proteins and ARAF, BRAF, HSP90AB1 phosphosites are not readily explainable by genomic analysis, suggesting that druggable translational and/or post-translational regulatory events may be uniquely diagnosed by MS. Drug treatment experiments targeting HER2 and components of the PI3K pathway supported proteogenomic response predictions in seven xenograft models. Our study demonstrates that MS-based proteomics can identify therapeutic targets and highlights the potential of PDX drug response evaluation to annotate MS-based pathway activities.

Original languageEnglish
Article number14864
JournalNature Communications
Volume8
DOIs
StatePublished - 28 Mar 2017
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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