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March 20, 2019International Journal of Molecular Sciences43 citationsOpen Access

Deletion of Osteopontin Enhances β2-Adrenergic Receptor-Dependent Anti-Fibrotic Signaling in Cardiomyocytes

CPCelina M. PollardVDVictoria L. DesimineSWShelby L. Wertz

Structured PICO

P
Population
H9c2 rat cardiac myoblasts/cardiomyocytes
I
Intervention
CRISPR-mediated Osteopontin (OPN) deletion and β2-adrenergic receptor activation
C
Comparator
Control H9c2 cells
O
Outcome
cAMP generation, Epac1 protein levels, and TGF-β-dependent fibrosissurrogate

Osteopontin deletion enhances β2-adrenergic receptor-dependent anti-fibrotic signaling via the cAMP/Epac1 pathway in cardiomyocytes, suggesting OPN blockade as a potential therapeutic target for cardiac fibrosis.

Abstract

Cardiac β2-adrenergic receptors (ARs) are known to inhibit collagen production and fibrosis in cardiac fibroblasts and myocytes. The β2AR is a Gs protein-coupled receptor (GPCR) and, upon its activation, stimulates the generation of cyclic 3′,5′-adenosine monophosphate (cAMP). cAMP has two effectors: protein kinase A (PKA) and the exchange protein directly activated by cAMP (Epac). Epac1 has been shown to inhibit cardiac fibroblast activation and fibrosis. Osteopontin (OPN) is a ubiquitous pro-inflammatory cytokine, which also mediates fibrosis in several tissues, including the heart. OPN underlies several cardiovascular pathologies, including atherosclerosis and cardiac adverse remodeling. We found that the cardiotoxic hormone aldosterone transcriptionally upregulates OPN in H9c2 rat cardiac myoblasts—an effect prevented by endogenous β2AR activation. Additionally, CRISPR-mediated OPN deletion enhanced cAMP generation in response to both β1AR and β2AR activation in H9c2 cardiomyocytes, leading to the upregulation of Epac1 protein levels. These effects rendered β2AR stimulation capable of completely abrogating transforming growth factor (TGF)-β-dependent fibrosis in OPN-lacking H9c2 cardiomyocytes. Finally, OPN interacted constitutively with Gαs subunits in H9c2 cardiac cells. Thus, we uncovered a direct inhibitory role of OPN in cardiac β2AR anti-fibrotic signaling via cAMP/Epac1. OPN blockade could be of value in the treatment and/or prevention of cardiac fibrosis.

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Cite This Study

Pollard et al. (2019) studied this question.

synapsesocial.com/papers/6a709e91ce524a4339c4578bhttps://doi.org/10.3390/ijms20061396
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