Estrogen Receptor-β Prevents Cardiac Fibrosis

Author:

Pedram Ali1,Razandi Mahnaz2,O'Mahony Fiona3,Lubahn Dennis4,Levin Ellis R.2156

Affiliation:

1. Departments of Medicine (A.P., E.R.L.), Irvine, California 92717

2. Division of Endocrinology (M.R., E.R.L.), Department of Veterans Affairs Medical Center, Long Beach, California 90822

3. Department of Molecular Medicine (F.O.), Royal College of Surgeons in Ireland, Dublin 9, Ireland

4. Department of Biochemistry (D.L.), University of Missouri, Columbia, Missouri 65211

5. Biochemistry (E.R.L.), Irvine, California 92717

6. Pharmacology (E.R.L.), University of California, Irvine, Irvine, California 92717

Abstract

Abstract Development of cardiac fibrosis portends the transition and deterioration from hypertrophy to dilation and heart failure. Here we examined how estrogen blocks this important development. Angiotensin II (AngII) and endothelin-1 induce cardiac hypertrophy and fibrosis in humans. and we find that these agents directly stimulate the transition of the cardiac fibroblast to a myofibroblast. AngII and endothelin-1 stimulated TGFβ1 synthesis in the fibroblast, an inducer of fibrosis that signaled via c-jun kinase to Sma- and Mad-related protein 3 phosphorylation and nuclear translocation in myofibroblasts. As a result, mesenchymal proteins fibronectin and vimentin were produced, as were collagens I and III, the major forms found in fibrotic hearts. 17β-Estradiol (E2) or dipropylnitrile, an estrogen receptor (ER)β agonist, comparably blocked all these events, reversed by estrogen receptor (ER)β small interfering RNA. E2 and dipropylnitrile signaling through cAMP and protein kinase A prevented myofibroblast formation and blocked activation of c-jun kinase and important events of fibrosis. In the hearts of ovariectomized female mice, cardiac hypertrophy and fibrosis were induced by AngII infusion and prevented by E2 administration to wild type but not ERβ knockout rodents. Our results establish the cardiac fibroblast as an important target for hypertrophic/fibrosis-inducing peptides the actions of which were mitigated by E2/ERβ acting in these stromal cells.

Publisher

The Endocrine Society

Subject

Endocrinology,Molecular Biology,General Medicine

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