HER2 and EGFR Overexpression Support Metastatic Progression of Prostate Cancer to Bone

Abstract

Activation of the EGF receptors EGFR (ErbB1) and HER2 (ErbB2) drives the progression of multiple cancer types through complex mechanisms that are still not fully understood. In this study, we report that HER2 expression is elevated in bone metastases of prostate cancer independently of gene amplification. An examination of HER2 and NF-κB receptor (RANK) coexpression revealed increased levels of both proteins in aggressive prostate tumors and metastatic deposits. Inhibiting HER2 expression in bone tumor xenografts reduced proliferation and RANK expression while maintaining EGFR expression. In examining the role of EGFR in tumor-initiating cells (TIC), we found that EGFR expression was required for primary and secondary sphere formation of prostate cancer cells. EGFR expression was also observed in circulating tumor cells (CTC) during prostate cancer metastasis. Dual inhibition of HER2 and EGFR resulted in significant inhibition of tumor xenograft growth, further supporting the significance of these receptors in prostate cancer progression. Overall, our results indicate that EGFR promotes survival of prostate TIC and CTC that metastasize to bone, whereas HER2 supports the growth of prostate cancer cells once they are established at metastatic sites. Cancer Res; 77(1); 74–85. ©2016 AACR.

Document Details

Document Type
Pub Defense Publication
Publication Date
Jan 01, 2017
Source ID
10.1158/0008-5472.can-16-1656

Entities

People

  • Alyssa Paul
  • Andrew Chou
  • Christopher Hall
  • Dafydd Thomas
  • Evan T Keller
  • Guadalupe Lorenzatti Hiles
  • Kathleen C. Day
  • Kathleen Woods Ignatoski
  • Lakshmi P. Kunja
  • Layla El-sawy
  • Luke J. Broses
  • Mark L. Day
  • Molly Kozminsky
  • Nallasivam Palanisamy
  • Rajal Shah
  • Scott J. Dawsey
  • Stephanie Daignault-newton
  • Steven James Wilson
  • Sunitha Nagrath
  • Todd M Morgan

Organizations

  • Michigan Institute for Clinical and Health Research
  • National Institutes of Health
  • National Science Foundation
  • United States Department of Defense
  • University of Michigan

Tags

Fields of Study

  • Biology

Readers

  • Molecular Biology and Genetics