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Taking the heart failure battle inside the cell: small molecule targeting of Gβγ subunits
Fadia A Kamal1, Alan V Smrcka, Burns C Blaxall
1Department of Medicine, University of Rochester School of Medicine and Dentistry, Rochester, NY, USA.
Insights
Small molecules targeting Gβγ signaling pathways offer a new therapeutic approach for heart failure (HF). These inhibitors block specific Gβγ protein interactions, potentially reversing detrimental signaling in HF progression.
Area of Science:
- Cardiology
- Molecular Biology
- Pharmacology
Background:
- Heart failure (HF) is characterized by increased sympathetic nervous system activity.
- This leads to desensitization of β-adrenergic receptors (β-ARs) and impaired signaling.
- Gβγ-mediated signaling pathways are implicated in HF pathophysiology.
Purpose of the Study:
- To investigate the effects of small molecule Gβγ inhibitors on downstream signaling pathways.
- To evaluate the therapeutic potential of these inhibitors in heart failure.
- To explore targeting G protein-coupled receptor (GPCR) kinase 2 (GRK2) and phosphoinositide 3-kinase (PI3K) pathways.
Main Methods:
- Identification of small molecules targeting Gβγ protein-protein interaction "hot spots."
- Analysis of Gβγ downstream signaling pathways.
- Assessment of effects on HF pathophysiology.
Main Results:
- Small molecule inhibitors selectively block specific Gβγ functions.
- These inhibitors impact Gβγ downstream signaling relevant to HF.
- Demonstrated potential to modulate pathologic signaling cascades in HF.
Conclusions:
- Small molecule inhibition of pathologic Gβγ signaling is a promising therapeutic strategy for HF.
- Targeting Gβγ interactions offers a novel approach to treating heart failure.
- Further research into these inhibitors could lead to new HF treatments.
Abstract:
Heart failure (HF) is devastating disease with poor prognosis. Elevated sympathetic nervous system activity and outflow, leading to pathologic attenuation and desensitization of β-adrenergic receptors (β-ARs) signaling and responsiveness, are salient characteristic of HF progression. These pathologic effects on β-AR signaling and HF progression occur in part due to Gβγ-mediated signaling, including recruitment of receptor desensitizing kinases such as G-protein coupled receptor (GPCR) kinase 2 (GRK2) and phosphoinositide 3-kinase (PI3K), which subsequently phosphorylate agonist occupied GPCRs. Additionally, chronic GPCR signaling signals chronically dissociated Gβγ subunits to interact with multiple effector molecules that activate various signaling cascades involved in HF pathophysiology. Importantly, targeting Gβγ signaling with large peptide inhibitors has proven a promising therapeutic paradigm in the treatment of HF. We recently described an approach to identify small molecule Gβγ inhibitors that selectively block particular Gβγ functions by specifically targeting a Gβγ protein-protein interaction "hot spot." Here we describe their effects on Gβγ downstream signaling pathways, including their role in HF pathophysiology. We suggest a promising therapeutic role for small molecule inhibition of pathologic Gβγ signaling in the treatment of HF. This article is part of a special issue entitled "Key Signaling Molecules in Hypertrophy and Heart Failure."
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