GPER: A novel target for non-genomic estrogen action in the cardiovascular system

G. Han, F. Li, X. Xu, Richard E. White

Research output: Contribution to journalArticlepeer-review

Abstract

A key to harnessing the enormous therapeutic potential of estrogens is understanding the diversity of estrogen receptors and their signaling mechanisms. In addition to the classic nuclear estrogen receptors (i.e., ERα and ERß), over the past decade a novel G-protein-coupled estrogen receptor (GPER) has been discovered in cancer and other cell types. More recently, this non-genomic signaling mechanism has been found in blood vessels, and mediates vasodilatory responses to estrogen and estrogen-like agents; however, downstream signaling events involved acute estrogen action remain unclear. The purpose of this review is to discuss the latest knowledge concerning GPER modulation of cardiovascular function, with a particular emphasis upon how activation of this receptor could mediate acute estrogen effects in the heart and blood vessels (i.e., vascular tone, cell growth and differentiation, apoptosis, endothelial function, myocardial protection). Understanding the role of GPER in estrogen signaling may help resolve some of the controversies associated with estrogen and cardiovascular function. Moreover, a more thorough understanding of GPER function could also open significant opportunities for the development of new pharmacological strategies that would provide the cardiovascular benefits of estrogen while limiting the potentially dangerous side effects.

Original languageAmerican English
JournalPharmacological Research
Volume71
StatePublished - Jan 1 2013

Keywords

  • Animals
  • Cardiovascular Physiological Phenomena
  • Cardiovascular System
  • Cell Proliferation
  • ERK1/2
  • Estrogen
  • Estrogens
  • G protein coupled estrogen receptor
  • G protein coupled receptor
  • G-Protein-Coupled
  • GPER (GPR30)
  • Humans
  • MAP Kinase Signaling System
  • Muscle
  • Receptors
  • Smooth
  • Smooth muscle cell growth
  • Vascular tone
  • apoptosis
  • blood vessel tone
  • cAMP
  • calcium mobilization
  • cardiovascular effect
  • cardiovascular function
  • cell differentiation
  • cerebrovascular accident
  • concentration response
  • coronary artery dilatation
  • cyclic AMP
  • drug effect
  • drug mechanism
  • endothelin 1
  • endothelium cell
  • enzyme inactivation
  • estrogen
  • estrogen receptor alpha
  • estrogen receptor beta
  • fulvestrant
  • g 1
  • g 15
  • heart protection
  • hormone action
  • human
  • hypertension
  • large conductance calcium activated potassium channel
  • mitogen activated protein kinase 1
  • mitogen activated protein kinase 3
  • nitric oxide
  • nonhuman
  • priority journal
  • prostanoid
  • protein expression
  • protein function
  • protein localization
  • protein protein interaction
  • protein targeting
  • receptor blocking
  • review
  • signal transduction
  • unclassified drug
  • vascular smooth muscle
  • vasodilator agent

Disciplines

  • Life Sciences

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