Targeted transgenesis identifies Gαs as the bottleneck in β2-adrenergic receptor cell signaling and physiological function in airway smooth muscle

Author:

Wang Wayne C. H.1,Pauer Susan H.23,Smith Dan'elle C.23,Dixon Madison A.23,Disimile David J.23,Panebra Alfredo1,An Steven S.4,Camoretti-Mercado Blanca23,Liggett Stephen B.235

Affiliation:

1. Department of Medicine, University of Maryland School of Medicine, Baltimore, Maryland;

2. Department of Medicine, University of South Florida Morsani College of Medicine, Tampa, Florida;

3. Center for Personalized Medicine and Genomics, University of South Florida Morsani College of Medicine, Tampa, Florida;

4. Department of Environmental Health Sciences, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland; and

5. Department of Molecular Pharmacology and Physiology, University of South Florida Morsani College of Medicine, Tampa, Florida

Abstract

G protein-coupled receptors are the most pervasive signaling superfamily in the body and act as receptors to endogenous agonists and drugs. For β-agonist-mediated bronchodilation, the receptor-G protein-effector network consists of the β2-adrenergic receptor (β2AR), Gs, and adenylyl cyclase, expressed on airway smooth muscle (ASM). Using ASM-targeted transgenesis, we previously explored which of these three early signaling elements represents a limiting factor, or bottleneck, in transmission of the signal from agonist binding to ASM relaxation. Here we overexpressed Gαs in transgenic mice and found that agonist-promoted relaxation of airways was enhanced in direct proportion to the level of Gαs expression. Contraction of ASM from acetylcholine was not affected in Gαs transgenic mice, nor was relaxation by bitter taste receptors. Furthermore, agonist-promoted (but not basal) cAMP production in ASM cells from Gαs-transgenic mice was enhanced compared with ASM from nontransgenic littermates. Agonist-promoted inhibition of platelet-derived growth factor-stimulated ASM proliferation was also enhanced in Gαs mouse ASM. The enhanced maximal β-agonist response was of similar magnitude for relaxation, cAMP production, and growth inhibition. Taken together, it appears that a limiting factor in β-agonist responsiveness in ASM is the expression level of Gαs. Gene therapy or pharmacological means of increasing Gαs (or its coupling efficiency to β2AR) thus represent an interface for development of novel therapeutic agents for improvement of β-agonist therapy.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

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1. A functional SNP upstream of the ADRB2 gene is associated with COPD;International Journal of Chronic Obstructive Pulmonary Disease;2018-03

2. Chronic β2AR stimulation limits CFTR activation in human airway epithelia;JCI Insight;2018-02-22

3. Ability of higenamine and related compounds to enhance glucose uptake in L6 cells;Bioorganic & Medicinal Chemistry;2017-12

4. Emerging concepts in smooth muscle contributions to airway structure and function: implications for health and disease;American Journal of Physiology-Lung Cellular and Molecular Physiology;2016-12-01

5. Pharmacogenomics of long-acting β2-agonists;Expert Opinion on Drug Metabolism & Toxicology;2015-08-03

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