4.8 Article

Genetic and pharmacologic inhibition of EPHA2 promotes apoptosis in NSCLC

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 124, Issue 5, Pages 2037-2049

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI72522

Keywords

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Funding

  1. Department of Veterans Affairs through a VA Merit Award
  2. NIH [R01 CA95004, R01 CA173469, F-31 CA167878]
  3. SPORE program [P50CA090949]
  4. VICC thoracic program
  5. Vanderbilt International Scholar Program
  6. NCI Cancer Center [P30 CA068485]

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Genome-wide analyses determined previously that the receptor tyrosine kinase (RTK) EPHA2 is commonly overexpressed in non-small cell lung cancers (NSCLCs). EPHA2 overexpression is associated with poor clinical outcomes; therefore, EPHA2 may represent a promising therapeutic target for patients with NSCLC. In support of this hypothesis, here we have shown that targeted disruption of EphA2 in a murine model of aggressive Kras-mutant NSCLC impairs tumor growth. Knockdown of EPH42 in human NSCLC cell lines reduced cell growth and viability, confirming the epithelial cell autonomous requirements for EPHA2 in NSCLCs. Targeting EPHA2 in NSCLCs decreased S6K1-mediated phosphorylation of cell death agonist BAD and induced apoptosis. Induction of EPHA2 knockdown within established NSCLC tumors in a subcutaneous murine model reduced tumor volume and induced tumor cell death. Furthermore, an ATP-competitive EPHA2 RTK inhibitor, ALW-II-41-27, reduced the number of viable NSCLC cells in a time-dependent and. dose-dependent manner in vitro and induced tumor regression in human NSCLC xenografts in vivo. Collectively, these data demonstrate a role for EPHA2 in the maintenance and progression of NSCLCs and provide evidence that ALW-II-41-27 effectively,inhibits EPHA2-mediated tumor growth in preclinical models of NSCLC.

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