Literature DB >> 10441103

In vivo inhibition of elevated myocardial beta-adrenergic receptor kinase activity in hybrid transgenic mice restores normal beta-adrenergic signaling and function.

S A Akhter1, A D Eckhart, H A Rockman, K Shotwell, R J Lefkowitz, W J Koch.   

Abstract

BACKGROUND: The clinical syndrome of heart failure (HF) is characterized by an impaired cardiac beta-adrenergic receptor (betaAR) system, which is critical in the regulation of myocardial function. Expression of the betaAR kinase (betaARK1), which phosphorylates and uncouples betaARs, is elevated in human HF; this likely contributes to the abnormal betaAR responsiveness that occurs with beta-agonist administration. We previously showed that transgenic mice with increased myocardial betaARK1 expression had impaired cardiac function in vivo and that inhibiting endogenous betaARK1 activity in the heart led to enhanced myocardial function. METHODS AND
RESULTS: We created hybrid transgenic mice with cardiac-specific concomitant overexpression of both betaARK1 and an inhibitor of betaARK1 activity to study the feasibility and functional consequences of the inhibition of elevated betaARK1 activity similar to that present in human HF. Transgenic mice with myocardial overexpression of betaARK1 (3 to 5-fold) have a blunted in vivo contractile response to isoproterenol when compared with non-transgenic control mice. In the hybrid transgenic mice, although myocardial betaARK1 levels remained elevated due to transgene expression, in vitro betaARK1 activity returned to control levels and the percentage of betaARs in the high-affinity state increased to normal wild-type levels. Furthermore, the in vivo left ventricular contractile response to betaAR stimulation was restored to normal in the hybrid double-transgenic mice.
CONCLUSIONS: Novel hybrid transgenic mice can be created with concomitant cardiac-specific overexpression of 2 independent transgenes with opposing actions. Elevated myocardial betaARK1 in transgenic mouse hearts (to levels seen in human HF) can be inhibited in vivo by a peptide that can prevent agonist-stimulated desensitization of cardiac betaARs. This may represent a novel strategy to improve myocardial function in the setting of compromised heart function.

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Year:  1999        PMID: 10441103     DOI: 10.1161/01.cir.100.6.648

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  28 in total

1.  Preservation of myocardial beta-adrenergic receptor signaling delays the development of heart failure after myocardial infarction.

Authors:  D C White; J A Hata; A S Shah; D D Glower; R J Lefkowitz; W J Koch
Journal:  Proc Natl Acad Sci U S A       Date:  2000-05-09       Impact factor: 11.205

Review 2.  Synthetic biology with surgical precision: targeted reengineering of signaling proteins.

Authors:  Vsevolod V Gurevich; Eugenia V Gurevich
Journal:  Cell Signal       Date:  2012-06-01       Impact factor: 4.315

Review 3.  Gene therapy in heart failure.

Authors:  Leif Erik Vinge; Philip W Raake; Walter J Koch
Journal:  Circ Res       Date:  2008-06-20       Impact factor: 17.367

4.  Uncoupling of myocardial beta-adrenergic receptor signaling during coronary artery bypass grafting: the role of GRK2.

Authors:  Christian F Bulcao; Prakash K Pandalai; Karen M D'Souza; Walter H Merrill; Shahab A Akhter
Journal:  Ann Thorac Surg       Date:  2008-10       Impact factor: 4.330

Review 5.  betaARKct: a therapeutic approach for improved adrenergic signaling and function in heart disease.

Authors:  Henriette Brinks; Walter J Koch
Journal:  J Cardiovasc Transl Res       Date:  2010-07-10       Impact factor: 4.132

6.  Alteration of myocardial GRK2 produces a global metabolic phenotype.

Authors:  Benjamin P Woodall; Kenneth S Gresham; Meryl A Woodall; Mesele-Christina Valenti; Alessandro Cannavo; Jessica Pfleger; J Kurt Chuprun; Konstantinos Drosatos; Walter J Koch
Journal:  JCI Insight       Date:  2019-04-04

Review 7.  GPCR desensitization: Acute and prolonged phases.

Authors:  Sudarshan Rajagopal; Sudha K Shenoy
Journal:  Cell Signal       Date:  2017-01-28       Impact factor: 4.315

Review 8.  Targeting GPCR-Gβγ-GRK2 signaling as a novel strategy for treating cardiorenal pathologies.

Authors:  Valeria Rudomanova; Burns C Blaxall
Journal:  Biochim Biophys Acta Mol Basis Dis       Date:  2017-01-25       Impact factor: 5.187

9.  Reversal of impaired myocardial beta-adrenergic receptor signaling by continuous-flow left ventricular assist device support.

Authors:  Shahab A Akhter; Karen M D'Souza; Ricky Malhotra; Michelle L Staron; Tracy B Valeroso; Savitri E Fedson; Allen S Anderson; Jai Raman; Valluvan Jeevanandam
Journal:  J Heart Lung Transplant       Date:  2010-03-04       Impact factor: 10.247

10.  Enhanced phosphorylation-independent arrestins and gene therapy.

Authors:  Vsevolod V Gurevich; Xiufeng Song; Sergey A Vishnivetskiy; Eugenia V Gurevich
Journal:  Handb Exp Pharmacol       Date:  2014
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