4.6 Article

GPER stabilizes F-actin cytoskeleton and activates TAZ via PLCβ-PKC and Rho/ROCK-LIMK-Cofilin pathway

期刊

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2019.06.132

关键词

GPER; F-actin cytoskeleton; TAZ; Breast cancer

资金

  1. Hebei Natural Science Foundation Youth Fund [C2019402141]
  2. Science and Technology Research Project of Hebei Education Department [QN2019215]
  3. Innovation fund project of Hebei University of Engineering [SJ010002098]
  4. Handan Science and Technology Research and Development Plan [1727201061]
  5. Hebei Cultivation of excellent clinical medical talents and basic research Projects [361037]
  6. Hormel Institute of the University of Minnesota

向作者/读者索取更多资源

Actin is a highly abundant cytoskeletal protein that is essential for all eukaryotic cells and participates in many structural and functional roles. It has long been noted that estrogen affects cellular morphology. However, recent studies observed that both estrogen and tamoxifen induce a remarkable cytoskeletal remodeling independent of ER. In addition to ER, G protein-coupled estrogen receptor 1 (GPER, also known as GPR30) also binds to estrogen with high affinity and mediates intracellular estrogenic signaling. Here, we show that activation of GPER by its specific agonist G-1 induces re-organization of F-actin cytoskeleton. We further demonstrate that GPER acts through PLC beta-PKC and Rho/ROCK-LIMK-Cofilin pathway, which are upstream regulators of F-actin cytoskeleton assembly, thereby enhancing TAZ nuclear localization and activation. Furthermore, we find that LIMK1/2 is critical for GPER activation induced breast cancer cell migration. Together, our results suggest that GPER mediates G-1-inducedcytoskeleton assembly and GPER promotes breast cancer cell migration via PLC beta-PKC and Rho/ROCK-LIMK-Cofilin pathway. (C) 2019 Elsevier Inc. All rights reserved.

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