Extracellular Vesicles in the Adaptive Process of Prostate Cancer during Inhibition of Androgen Receptor Signaling by Enzalutamide

Abstract

Current treatments for advanced prostate cancer focus on inhibition of the androgen receptor (AR) by androgen deprivation therapy (ADT). However, complex interactions mediated by tumor suppressors, oncogenes, aberrations of AR expression, or de novo androgen production have been shown to induce the adaptive response of prostate cancer, leading to the development of castration resistant prostate cancer. In this study, we report the effects of AR antagonist, enzalutamide on the protein contents of extracellular vesicles (EVs). EVs mediate cell‐to‐cell communication and increasing evidence shows the role of EVs in promoting cancer survival and metastasis. We found that treatment with enzalutamide alters the secretion of EVs, one of which is a plasma membrane calcium pump, ATP2B1/PMCA ATPase, as an AR‐regulated EV protein. We highlight the networks of interactions between AR, Ca2+, and ATP2B1, where the extracellular proteins thrombospondin‐1, gelsolin, and integrinß1 were previously reported as regulators for cancer progression and metastasis, indicating the potential role of EV‐derived proteins in mediating calcium homoeostasis under AR inhibition by enzalutamide. Our data further highlight the cross‐talk between AR signaling and EV pathways in mediating resistance toward ADT.

Document Details

Document Type
Pub Defense Publication
Publication Date
Dec 01, 2017
Source ID
10.1002/pmic.201600427

Entities

People

  • Anja Rockstroh
  • Carolina Soekmadji
  • Colleen Nelson
  • Grant A. Ramm
  • Pamela J. Russell

Organizations

  • Movember Foundation
  • QIMR Berghofer Medical Research Institute
  • Queensland University of Technology
  • United States Department of Defense

Tags

Fields of Study

  • Biology

Readers

  • Molecular Biology and Genetics
  • Molecular and Cellular Biochemistry
  • Prostate Cancer Biology.