The ERBB network facilitates KRAS-driven lung tumorigenesis

  • Sci Transl Med. 2018 Jun 20;10(446):eaao2565. doi: 10.1126/scitranslmed.aao2565.
Björn Kruspig  1 Tiziana Monteverde  1 Sarah Neidler  1 Andreas Hock  2 Emma Kerr  3 Colin Nixon  2 William Clark  2 Ann Hedley  2 Sarah Laing  1 Seth B Coffelt  1 John Le Quesne  4 Craig Dick  1  5 Karen H Vousden  2 Carla P Martins  3 Daniel J Murphy  6  2
Affiliations
  • 1. Institute of Cancer Sciences, University of Glasgow, Glasgow G61 1BD, UK.
  • 2. Cancer Research UK Beatson Institute, Glasgow G61 1BD, UK.
  • 3. Medical Research Council (MRC) Cancer Unit, Cambridge CB2 0XZ, UK.
  • 4. MRC Toxicology Unit, Leicester LE1 7HB, UK.
  • 5. National Health Service Queen Elizabeth University Hospital, Glasgow G51 4TF, UK.
  • 6. Institute of Cancer Sciences, University of Glasgow, Glasgow G61 1BD, UK. [email protected].
Abstract

KRAS is the most frequently mutated driver oncogene in human adenocarcinoma of the lung. There are presently no clinically proven strategies for treatment of KRAS-driven lung Cancer. Activating mutations in KRAS are thought to confer independence from upstream signaling; however, recent data suggest that this independence may not be absolute. We show that initiation and progression of KRAS-driven lung tumors require input from ERBB family Receptor Tyrosine Kinases (RTKs): Multiple ERBB RTKs are expressed and active from the earliest stages of KRAS-driven lung tumor development, and treatment with a multi-ERBB inhibitor suppresses formation of KRASG12D-driven lung tumors. We present evidence that ERBB activity amplifies signaling through the core Ras pathway, supporting proliferation of KRAS-mutant tumor cells in culture and progression to invasive disease in vivo. Brief pharmacological inhibition of the ERBB network enhances the therapeutic benefit of MEK (mitogen-activated protein kinase kinase) inhibition in an autochthonous tumor setting. Our data suggest that lung Cancer patients with KRAS-driven disease may benefit from inclusion of multi-ERBB inhibitors in rationally designed treatment strategies.

Products
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    Product Name
    Description
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  • 99.94%, HER2/EGFR Inhibitor
    target: EGFR
    Research Areas: Cancer