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Attenuated desensitization of β-adrenergic receptor by water-soluble N-nitrosamines that induce S-nitrosylation
Noriko Makita1, Yoji Kabasawa, Yuko Otani
1Department of Endocrinology and Nephrology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Rationale:
The clinical problem of loss of β-adrenergic receptor (β-AR) response, both in the pathogenesis of heart failure and during therapeutic application of β-agonists, is attributable, at least in part, to desensitization, internalization, and downregulation of the receptors. In the regulation of β-AR signaling, G protein-coupled receptor kinase 2 (GRK2) primarily phosphorylates agonist-occupied β-ARs, and this modification promotes desensitization, internalization, and downregulation of β-ARs. It has been demonstrated that GRK2 is inhibited by its S-nitrosylation. However, compounds that induce S-nitrosylation, such as S-nitrosoglutathione, simultaneously generate NO, which has been demonstrated to operate for cardiovascular protection.
Objective:
We examine whether S-nitrosylation without NO generation inhibits desensitization of β(2)-AR by GRK2. We thus aim to synthesize compounds that specifically induce S-nitrosylation.
Methods And Results:
We have developed water-soluble N-nitrosamines that have S-nitrosylating activity but lack NO-generating activity. These compounds, at least partly, rescue β-AR from desensitization in HEK 293 cells expressing FLAG-tagged human β(2)-AR and in rat cardiac myocytes. They inhibit isoproterenol-dependent phosphorylation and internalization of β(2)-AR. Indeed, they nitrosylate GRK2 in vitro and in cells, and their S-nitrosylation of GRK2 likely underlies their inhibition of β(2)-AR desensitization.
Conclusions:
Compounds that induce S-nitrosylation without NO release inhibit GRK2 and attenuate β(2)-AR desensitization. Developing water-soluble drugs that specifically induce S-nitrosylation may be a promising therapeutic strategy for heart failure.
Insights
New compounds that induce S-nitrosylation without NO release inhibit GRK2, preventing beta-adrenergic receptor (β-AR) desensitization. This offers a potential therapeutic strategy for heart failure.
Area of Science:
- Cardiovascular Pharmacology
- Molecular Signaling
- Drug Discovery
Background:
- Loss of beta-adrenergic receptor (β-AR) response contributes to heart failure and limits β-agonist therapy.
- G protein-coupled receptor kinase 2 (GRK2) phosphorylates and desensitizes β-ARs.
- GRK2 inhibition via S-nitrosylation is known, but often linked to NO generation.
Purpose of the Study:
- To investigate if S-nitrosylation alone, without NO generation, can inhibit GRK2-mediated β(2)-AR desensitization.
- To synthesize novel compounds that specifically induce S-nitrosylation.
Main Methods:
- Development of water-soluble N-nitrosamines with S-nitrosylating but not NO-generating activity.
- Testing compound efficacy in HEK 293 cells expressing β(2)-AR and in rat cardiac myocytes.
- Assessing inhibition of isoproterenol-dependent β(2)-AR phosphorylation and internalization.
- In vitro and cellular nitrosylation assays of GRK2.
Main Results:
- Novel water-soluble N-nitrosamines were synthesized, exhibiting S-nitrosylating activity without NO release.
- These compounds partially rescued β-AR from desensitization in cellular and myocyte models.
- The compounds inhibited β(2)-AR phosphorylation and internalization.
- Direct nitrosylation of GRK2 by the compounds was observed, correlating with the inhibition of β(2)-AR desensitization.
Conclusions:
- Compounds inducing S-nitrosylation without NO release effectively inhibit GRK2 and attenuate β(2)-AR desensitization.
- Developing drugs that specifically induce S-nitrosylation presents a promising therapeutic avenue for heart failure treatment.
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