
Both GPER and membrane oestrogen receptor‐α activation protect ventricular remodelling in 17β oestradiol‐treated ovariectomized infarcted rats
Author(s) -
Lee TsungMing,
Lin ShinnZong,
Chang NenChung
Publication year - 2014
Publication title -
journal of cellular and molecular medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.44
H-Index - 130
eISSN - 1582-4934
pISSN - 1582-1838
DOI - 10.1111/jcmm.12430
Subject(s) - gper , enos , protein kinase b , medicine , endocrinology , pi3k/akt/mtor pathway , phosphorylation , chemistry , estrogen receptor , biology , nitric oxide , signal transduction , nitric oxide synthase , biochemistry , cancer , breast cancer
Clinical and experimental studies have established that gender is a factor in the development of ventricular hypertrophy. We investigated whether the attenuated hypertrophic effect of oestradiol was via activation of phosphatidylinositol 3‐kinase ( PI 3K)/Akt/endothelial nitric oxide synthase ( eNOS ) through non‐genomic action. Twenty‐four hours after coronary ligation, female W istar rats were randomized into control, subcutaneous oestradiol treatment or a G‐protein coupled oestrogen receptor ( GPER ) agonist, G‐1 and treated for 4 weeks starting from 2 weeks after bilateral ovariectomy. Ventricular hypertrophy assessed by cardiomyocyte size after infarction was similarly attenuated by oestradiol or G‐1 in infarcted rats. The phosphorylation of Akt and eNOS was significantly decreased in infarcted rats and restored by oestradiol and G‐1, implying the GPER pathway in this process. Oestradiol‐induced Akt phosphorylation was not abrogated by G‐15 (a GPER blocker). Akt activation was not inhibited by actinomycin D. When a membrane‐impermeable oestrogen‐albumin construct was applied, similar responses in terms of eNOS activation to those of oestradiol were achieved. Furthermore, PPT , an ER α receptor agonist, activated the phosphorylation of Akt and eNOS . Thus, membrane ER α receptor played a role in mediating the phosphorylation of Akt and eNOS . The specific PI 3K inhibitor, LY 290042, completely abolished Akt activation and eNOS phosphorylation in infarcted hearts treated with either oestradiol or oestradiol + G‐15. These data support the conclusions that oestradiol improves ventricular remodelling by both GPER ‐ and membrane‐bound ER α‐dependent mechanisms that converge into the PI 3K/Akt/ eNOS pathway, unveiling a novel mechanism by which oestradiol regulates pathological cardiomyocyte growth after infarction.