Target intelligence / Profile preview

Membrane estrogen receptor (mER) (mER)

Target
mER
Molecular classification
G protein-coupled receptor [1, 12], Receptor [1, 12]
01

Overview

Membrane estrogen receptors (mERs) are a class of cell surface receptors that mediate the rapid, non-genomic effects of estrogen, distinct from the slower transcriptional actions of nuclear estrogen receptors [1, 12]. The most well-characterized member is the G protein-coupled estrogen receptor 1 (GPER1, formerly GPR30), though membrane-localized versions of the classical receptors ER-alpha and ER-beta also contribute to this signaling pool [1, 13]. Upon activation by 17β-estradiol or other ligands, mERs trigger intracellular cascades such as cAMP production, calcium mobilization, and the transactivation of the epidermal growth factor receptor (EGFR), which subsequently activates the MAPK/ERK and PI3K/Akt pathways [6, 10]. These receptors play critical roles in diverse physiological processes, including vasodilation, cardioprotection, neuroprotection, and metabolic homeostasis [10, 15]. In disease, mERs are heavily implicated in the progression and endocrine resistance of various cancers, particularly breast and endometrial malignancies [7, 11]. Interestingly, common anti-estrogen therapies like tamoxifen and fulvestrant act as agonists for GPER1, which may contribute to therapeutic resistance in some patients [8, 17].

Other names
G protein-coupled estrogen receptor 1GPER1GPR30mER-alphamER-betaER-XGq-mER
02

Mechanism of action

Agonism or antagonism of G protein-coupled receptor signaling, leading to rapid activation of intracellular cascades including cAMP production, calcium mobilization, and Src-mediated transactivation of the epidermal growth factor receptor (EGFR), which subsequently triggers MAPK/ERK and PI3K/Akt pathways [6, 10, 15].

03

Biological functions

Signal transduction [1, 10]Cell proliferation [10, 15]Vasodilation [10, 15]Rapid non-genomic signaling [1, 13]Cardioprotection [10, 15]Neuroprotection [10, 15]Insulin secretion [10, 16]Uterine contractility [10]
04

Disease associations

Cancer (Breast, Endometrial, Ovarian, Prostate, Melanoma) [7, 8, 15]Cardiovascular disease [10, 15]Metabolic syndrome [16]Neurodegenerative disease (Parkinson's) [1, 10]Polycystic ovary syndrome [16]Osteoporosis [16]
05

Safety considerations

Endocrine therapy resistance in breast cancer [8, 17]Potential reproductive toxicity [15]Off-target cardiovascular effects [10]Metabolic dysregulation [16]
06

Interacting drugs

G-1 [15, 17]

6 more in the full profile.

07

Biomarkers

GPER expression levels [7, 11]Ki-67 [14]

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